gmm - simulation to achieve gold plus
TRANSCRIPT
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AGENDA
1 PROJECT OVERVIEW2 SUMMARY OF GREEN MARK ASSESSMENT3 SIMULATION4 DETAILS OF GREEN MARK ASSESSMENT
5 CARBON FOOTPRINT6 Q&A
PEDESTRIAN NODES
PRIMARY V EHICULAR ACCESS
SITE CONTEXT
SITE
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PROJECT OVERVIEW
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PROJECTOVERVIEW
SITE AREA 1309.9 SQM
GROSS FLOOR AREA
14,671 SQM
PROPOSEDBUILDING HEIGHT
24 STOREY WITH 1BASEMENT 124.! MO"ERALL HEIGHT
TYPI#AL OFFI#EFLOOR
17 STOREYS $4TH % 20TH STOREY& 4.! MFLOOR TO FLOOR HT
TYPI#AL FLOOR AREA
71! SQ M $2ND LE"EL&92! SQM $1'TH LE"EL&
TOTAL NO OF #AR%PAR(
4' LOTS
PROJECT INFORMATION
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SUMMARY OF GREEN
MARK ASSESSMENT
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Overall CURRENT
Assessment Part 1. ENERGY EFFICIENCY 10Part 2. WATER EFFICIENCY
Part 3. ENVIRONENTA!PROTECTION
Part ". IN#OORENVIRONENTA! $UA!ITY
Part %. OT&ER GREENFEATURES
1
12
'
1
30
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Overall TARGET Assessment
Part 1. ENERGY EFFICIENCY %0Part 2. WATER EFFICIENCY
Part 3. ENVIRONENTA!PROTECTION
Part ". IN#OORENVIRONENTA! $UA!ITY
Part %. OT&ER GREENFEATURES
11
21
(
"
)"
current + improvement = tr!et"# + $% = &%
Propo'e( )u(!etto c*ieve ourtr!et
S,-.$$-###
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GreeGreenn
ar* ar*
Tr+Tr+A,a-nA,a-n
Cert-e/Cert-e/ Gl/Gl/ Gl/Gl/PlsPls Plat-nmPlat-nm
SreSre 0 ")0 ") %0 4"%0 4" 4% ("4% (" (% ()(% () )0 100)0 100
Crrent Sre
30
2%5
Ener,+ Sav-n,s
Tar,et Sre
)"
305
Ener,+ Sav-n,s
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SIMULATION
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W6+ S-mlat-n7
T a6-eve t6e Green ar* Gl/ Pls 8 Plat-nm rat-n,9 -t -s :rere;-s-te re;-rement t /emnstrate t6e <ll=-n, ener,+
sav-n,s as m:are/ =-t6 t6e >asel-ne m/el s-n, ener,+m/ell-n,?
At least 2%5 ener,+ sav-n,s <r Green ar* Gl/ Pls
At least 305 ener,+ sav-n,s <r Green ar* Plat-nm
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A/vanta,es an/ Cnstra-nts
A)*+-+/
All= s t anal+se t6e -m:at < env-rnmental6an,es t t6e >-l/-n,
Ena>le /es-,n 6an,es >e<re /-n, t6e atal>-l/-n,9 t6s av-/-n, m-sta*es
Prv-/e e@tens-ve -n<rmat-n nt >ta-na>le
t6r,6 e@:er-mental test
#-+-
#ata -n:t -s r-al. Assm:t-nsma/e aets t6e reslt < t6e
s-mlat-n Reslt -nter:retat-n >+ /-erent
nsltants ma+ var-es
S*-lle/ r-ente/. User s*-ll 8e@:er-ene are r-t-al -n =6en
:r/-n, t6e s-mlat-n
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01 A-r Fl= S-mlat-n
02 Slar S-mlat-n
03 T6ermal S-mlat-n
0" Ener,+ /ell-n,
S-mlat-ns T+:es
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!1
A"# F$% S"'($)*"%+
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A-rB= S-mlat-n
O>et-ve?
1DT /eterm-ne eet < t6e /-erent=-n/ s:ee/ an/ =-n/ /-ret-n n t6ea-rB= arn/ t6e >-l/-n, an/ t6esrrn/-n, area2DT st/+ < =-n/ :atterns <r
:e/estr-ans r :ant m<rt3DT e@:lre eet-veness < natralvent-lat-n -n var-s >-l/-n, areas
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A-rB= S-mlat-n
S-n,a:res =eat6er -s tra/-t-nall+ lass-e/ -nt "
:er-/sar/-n, t avera,e :reva-l-n, =-n/ /-ret-ns?
aD Nrt6east nsn Seasn #eem>er t Earl+ar6D
>D Intermnsn Per-/ !ate ar6 t a+D
D St6=est nsn Seasn ne t Se:tem>erD
/D Intermnsn Per-/ Ot>er t Nvem>erD
T6e trans-t-ns >et=een t6e mnsn seasns r,ra/all+9 ,enerall+ ver a :er-/ < 2 mnt6s. T6e=-n/s /r-n, t6ese trans-t-ns r Inter mnsn:er-/s are sall+ l-,6t an/ ten/ t var+ -n /-ret-n
/a-l+.
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), Nrt6east M%+-%%+ S.)-%+/D.0.'.# *% E)#$ M)#0,
, I+*.#'%+-%%+ P.#"% /L)*.
M)#0 *% M),
0, St6=est M%+-%%+ S.)-%+/J(+. *% S.*.'.#,
, I+*.#'%+-%%+ P.#"%
/O0*%.# *% N%7.'.#,
SITE CONTEXT
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Reslts <rm A-rB= S-mlat-n
Evalat-n < #es-,n O:t-ns
1& B5) 5+- 85+/:/-
/ ; < -/+/
2& E/ =/- */-5+-- ->/ 8/ +8+< +- 3) ?
3& D/-/:/ ->/ )-+/ @/-//
->/ /%</5/- +) -+ +55$5+)) 8//C ++)/ /&
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!2
S%$)# S"'($)*"%+
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So/r Simu/tionO)0ective
12 Optimi'e ntur/ /i!*tin!
,2 Minimi'e 'o/r *et !in
T*e )/ue /ine' re t*ennu/ 'un pt* inSin!pore3
In Sin!pore 413"5Nort* n( 1#.3"5 E't2-
t*e 'un trve/' in/mo't 'tri!*t trc67rom t*e E't to t*e8e't
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So/r Simu/tion
"2 An/9'e' '*(in! 7rom 'urroun(in! )ui/(in!'
%2 An/9'e' t*e 'un '*(in! (e'i!n option'
:2 An/9'e' mount o7 (9/i!*t penetrtion into interior 'pce'
$2 An/9'e' *et /o( on t*e 7;(e
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So/r Simu/tion 4 Sun S*(in! < D9/i!*t An/9'i'2
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12 Ev/ute t*e e77ect o7 'un '*(in! n(RC vertic/ 'creenin! in '*(in! n(r(ition re(uction
,2 Determine eten( o7 'e/7>'*(in! )9'urroun(in! )ui/(in!'
"2 Avi/)/e (9/i!*t /eve/' in 'pce%2 Determine i7 /uminnce i' 'u77icient 7or
t'6 n( i7 rti7ici/ /i!*tin! i' re?uire(
Benefits:
• Lower energy consumption by air-con system
• Maximise use of day light
• Occupant comfort by reducing glare
Reslts <rm SlarS-mlat-nEvalat-n < #es-,n O:t-ns
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!3 T.#')$ S"'($)*"%+
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T.#')$ S"'($)*"%+-
1D I/ent-<+ t6e e@tent <6eat /-str->t-n =-t6-nt6e tenante/ n-ts-. &eat la/ ,enerate/
>+ l-,6t-n,s9e;-:ment 8:-ers
O>et-ve
In/r Tem:. >et=een 22.% t 2%.%C 8Relat-ve &m-l-t+ H 405
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T.#')$ S"'($)*"%+-
-. !at-n < /-ser--. A-r >alan-n,---.S:e-at-n < t6e ACV s+stem
3D Evalate ETTV /es-,n-. Evalate r< an/ <aa/e n-s6es
"D O:t-m-Je l-n, strate,-es
O>et-ve 8 Evalat-n < #es-,n O:t-ns
I+%%# T.'8 .*..+ 2285 *% 2585%C & R.$)*"7.9('"$"* : ;!<
2D Evalate ACVs+stem
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- Room Temperature- Surface Temperatures- Humidity- Condensation Risk- High heat transfer materials thermal comfort
T.#')$ S"'($)*"%+-Reslts <rm T6ermal S-mlat-n =-ll 6el: t-/ent-<+ t6e <ll=-n,
T6-s =l/ 6el: t :re/-t t6e>-l/-n,s -nse :er<rmane
>e<re -t -s >-lt =6-6 t6enall=s s t /e-/e -< 6an,esare nee/e/ an/ =6at s6l/>e 6an,e/.
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!4 ENERGY MODELLING
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E+.#= M%.$$"+=
A computer model to simulate the way a building consumes energy
Obecti!e
1D T se as a tl -n t6e /es-,n < >-l/-n,s <r/eterm-n-n, t6e l-n, an/ vent-lat-n la/s =-t6-nt6e >-l/-n,9 t6e e;-:ment t+:es an/ s-Jes nee/e/ t
meet t6ese la/s an/ :re/-t ttal ener,+nsm:t-n
2D T assess t6e e;-:ment :er<rmanes -n /es-,nsta,e an/ t -/ent-<+ t6e m:l-ane t >-l/-n,
stan/ar/s an/ als <r t6e enm- :t-m-Jat-n <>-l/-n, m:nents
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GreGre
enenarar
* *
Tr+Tr+A,a-nA,a-n
Cert-eCert-e//
Gl/Gl/ Gl/Gl/PlsPls Plat-nPlat-nmm
SrSr
ee
0 ")0 ") %0 4"%0 4" 4% ("4% (" (% ()(% () )0 100)0 1002%5
Ener,+ Sav-n,s305
Ener,+ Sav-n,s
Pre Re?ui'ite 7or @reen Mr6 @o/( P/u' P/tinum
Nee( to crr9 out tBo4,2 t9pe' o7 ener!9 'imu/tion mo(e/'
Re7erence mo(e/4A2 v' Propo'e( mo(e/42
• Re7erence mo(e/ /(! comp/ie' Bit* // min3 re?uirement' pre'cri)e' in co(e'n( 'tn(r('• Propo'e( mo(e/ /(! t*t )ein! (e'i!ne( 7or more t*n meet' co(ere?uirement'- incorportin! innovtive ener!9 e77icient '9'tem'3
AF G F = "# ener!9 'vin!' > @reen Mr6 P/tinum
AF G F = ,: ener!9 'vin!' G @reen Mr6 @o/( P/u'
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Compri'on o7 vriou' E?uipment (e'i!n'trte!ie'
T se as a tl -n t6e /es-,n < >-l/-n,s t :re/-t la/s 8 ttalener,+ nsm:t-n 8 assess t6e e;-:ment /es-,n :er<rmanes
-n /es-,n sta,e?
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Create mass-n,m/el
L)%(*> -).>-"?.> %#".+*)*"%+
#ene r<9=-n/=s9 Brs9
:en-n,s9 s6a/-n,9=alls9 et
U7)$(.> 0%$%#>"'.+-"%+->*#)+-'"--"%+> .*0
#ene Jnes6av-n, /-erent
ACVFr ea6 Jne9
/ene 6eatla/s9 l-,6t-n,
s+stems9
:erat-n,s6e/les9 et
#ene ACV/eta-ls <r ea6
Jne
COP> @% #)*.-> -.*%"+*-> .*0%# ('-> )+-> .('"".#->0"$$.#-> .*0
L%0)$ .)*.#)*) $.-
Per<rm 6rl+s-mlat-n
Pea* la/9 Part la/9Annal :=ernsm:t-n /ata
S.+-%#- & %*.# .0".+*.)*(#.- ') #.(0.%.#)*"+= *"'.-> .+.#=
0%+-('*"%+-
et6/l,+
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DETAILS OF GREEN MARK
ASSESSMENT
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/I, ENERGY RELATED
REQUIREMENTS
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11 K-l/-n, Envel:e ETTV
12 A-r Cn/-t-n-n, S+stem
13 K-l/-n, Envel:e L#es-,nMT6ermalParameters
1" Natral Vent-lat-n e@l/e ar:ar*sD
1% Art--al !-,6t-n,
1' Vent-lat-n -n Car Par*s
14 Vent-lat-n -n Cmmn Areas
1( !-<ts 8 Esalatrs
1) Ener,+ E-ent Prat-es 8 Featres
110 Rene=a>le Ener,+ Kns P-ntsD
A-r Cn
Nn
A-r Cn
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PART 1
ENERGY EFFICIENY
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PART 11
B("$"+= E+7.$%. ETTV
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Current ui/(in! Enve/ope
• Pre'ent Con(ition ETTV o7 :# 8m,
• Current 88R 7or t*e Curtin 8// J;(e i' ," =#3$K
• Eo'6e/eton Structure provi(e "# '*(e 7or t*e Curtin 8// J;(e
KCA Green ar* Assessment Vers-n NRKM3.0
CATEGORY
a@ PtPresent
Cn/-t-nKase Pts Pr:sal
Im:rve/ Pts F-nal Pts
Investment SD <rPlat-nm
Annal
Sav-n,s SD
Pa+>a* +rD
ID Ener,+ Relate/Re;-rements
PART !1 ENERGY EFFICIENCY
11 B("$"+= E+7.$%. ETTV 15 5!W'2 ! 3W'2 15 158! 1>3!!>!!!1;>!!
! 6!
"-" #uilding $n!elope - $TT%
P8+5 1& M:/ S# +) U *+5/ 5+ -> 88/) L%E
)@5/ 5+/) - - /)/ ->/ S5+ )-->> -+8+/- 8- - /)/ ETT" -
39WC:2
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Kasel-ne ETTV allat-ns
Pr:se/ ETTVallat-ns
Total proposed $TT% & '( )*m+
Kasel-ne Glass T+:e? Clear Inslat-n,Glass
U< vale 2.(
SC0.'2
Kasel-ne O:a;e T+:e? Alm-n-mla//-n, Q%0mm
r*=l-nslat-n
U= vale 0.%%
SC0.(%
SC SC ,lass @ SC :a;e 0.%3WWR 2M3 0.'4
Total baseline $TT% & , )*m+
Pr:se/ Glass T+:e? #>le ,laJe/!=e ,lassU vale 1.%SC0.31
Pr:se/ O:a;e T+:e? Alm-n-mla//-n, Q%0mm
r*=l-nslat-nUvale 0.%%SC0.(%
SC SC ,lass @ SC :a;e 0.%3WWR 2M3 0.'4
./ Score& "00-1+2'(3& ++points & "4pts ma2
"-" #uilding $n!elope - $TT%
"-" #uilding $n!elope - $TT%
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COST @LAEDAREA4m,2
SINm, TOTAL
#aseline 00 45 640070008roposed 00 "9 6"7007000
Additional in!estment : 6"7'007000
S+* 8/ 11 WC:2
A/+ ++)/ 5 +/+ ','00:2 $E-:+-/&
R/)- >/+- + $<W& 97<W R/)- 5 5+) 97<WC3.!17 $27.6-&
#>55/ /=/ */ 0.6<WC-
E/ +*/) >55/ 16.!<W
T-+5 // +*/) 16.!<W 11 > 8/ )+
1'2<W>C)+
S+* 8/ /+ T-+5 // +*/) $1'2& 0.23'' /-
36!)+
S1!9!0(
A))-+5 */-:/- S1,300,000
P+@+< 60 /+
"-" #uilding $n!elope - $TT%
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PART 12
AIR CONDITIONINGSYSTEM
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"-+ Air-Conditioning System
KCA Green ar* Assessment Vers-n NRKM3.0
CATEGORY
a@ PtPresent
Cn/-t-nKase Pts Pr:sal
Im:rve/ Pts F-nal Pts
Investment SD <rPlat-nm
Annal
Sav-n,s SD
Pa+>a* +rD
ID Ener,+ Relate/Re;-rements
PART !1 ENERGY EFFICIENCY
12 A"#C%+"*"%+"+= S-*.' 2; C%+7.+*"%+)$ !P#%%-)$ 2> CO2
-.+-%# (-. 22 228! 4!!>!!!8!!H5>!!
! 45
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Propo'e(C*i//er
Con7i!urtion
Epecte(
Annu/Svin!'
42
A((ition/Inve'tment
42
ROI49er'2
NPV ,3: u'in!
1: 9er'LCC
NPV %3# u'in!
1: 9er'LCC
S9'temE77icienc9468Ton2
Current " ,:# RT > > > > > #3.$
Propo'/ 1 , "## RT "$-### 1##-### ,3K. "%:-$.# "##-",# #3K:
Propo'/ , , :$# RT .:-### "K#-### %3": $.,-"## :K:-,## #3$#
Propo'/ " , :## RT K#-### ,:#-### "3:K $1$-$## :,.-%## #3$:
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Pr:sal 2 -s remmen/e/ <r t6e <ll=-n, reasns?
1D As t6e :ea* la/ a::r@. %00 RT9 t6ere -s 1005 stan/>+
an/Be@->-l-t+ -n :erat-n -n terms < s6e/le/ rtat-n <
:erat-n.2D E@ellent s+stem e-en+ < 0.'0 *WMTn 30.235
-m:rvementD 3D Ne= Te6nl,+ s-n, Var-a>le S:ee/ #r-ve VS#D <rC6-llers "D G/ E@:ete/ Annal Sav-n, < (%9000
SYSTEM EJJICIENCY IMPROVEMENT = "#3,"
POINTS ACHIEVED = 13%: "#3," = %"3." = MA,# point'
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Air-conditioning System#aseline for Air ;istribution system
412 Air Hn(/in! Unit mu't *ve )etter e77icienc9 n(u'in! VSD '9'tem
4,2 Sen'or' or 'imi/r utomtic contro/ (evice' re u'e( tore!u/te out(oor ir 7/oB rte to mintin t*e concentrtion o7cr)on (ioi(e )e/oB 1###ppm
Jre'* Air
Actutor
Return Air CO,
DDC
Dmper
Cr)on(ioi(e
Sen'or
Contro/ Strte!9
CO, to )e contro//e(t*rou!* DDC vi Jre'* AirDmper
CO, SENSOR ADDED = , POINTS
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PART 13
B("$"+= E+7.$%. D.-"=+ T.#')$P)#)'.*.#-
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KCA Green ar* Assessment Vers-n NRKM3.0
CATEGORY
a@ Pt PresentCn/-t-n Kase Pts Pr:sal Im:rve/ Pts F-nal Pts
Investment SD <rPlat-nm
Anna
lSav-n,s SD
Pa+>a* +rD
ID Ener,+ Relate/Re;-rements
PART!1
ENERGY EFFICIENCY
13B("$"+= E+7.$%. D.-"=+T.#')$ 2 N%* A$"0)$. / A--('"+= +%+ )"# 0%+ )#.)- : 1!< % *%*)$ @%%# )#.) /.0$("+= 0)#)#"+=,
14 N)*(#)$ V.+*"$)*"%+ 13
"-' #uilding $n!elope < ;esign*Thermal
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PART 14N)*(#)$ V.+*"$)*"%+/.0$(. C)#P)#,
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KCA Green ar* Assessment Vers-n NRKM3.0
CATEGORY
a@ Pt PresentCn/-t-n Kase Pts Pr:sal Im:rve/ Pts F-nal Pts
Investment SD <rPlat-nm
Anna
lSav-n,s SD
Pa+>a* +rD
ID Ener,+ Relate/Re;-rements
PART!1
ENERGY EFFICIENCY
13B("$"+= E+7.$%. D.-"=+T.#')$ 2 N%* A$"0)$. / A--('"+= +%+ )"# 0%+ )#.)- : 1!< % *%*)$ @%%# )#.) /.0$("+= 0)#)#"+=,
14 N)*(#)$ V.+*"$)*"%+ 13
"-9 =atural %entilation
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PART 15ARTIFICIAL LIG9TING
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To encour!e t*e u'e o7 )etter e77icient /i!*tin! to minimie ener!9con'umption 7rom /i!*tin! u'!e B*i/e mintinin! proper /i!*tin! /eve/3
KCA Green ar* Assessment Vers-n NRKM3.0
CATEGORY
a@ PtPresent
Cn/-t-nKase Pts Pr:sal
Im:rve
/ Pts F-nal Pts
Investment SD <rPlat-nm
Annal
Sav-n,
s SD
Pa+>a* +rD
ID Ener,+ Relate/Re;-rements
PART!1
ENERGY EFFICIENCY
15 A#*"0")$ L"=*"+= 12 C%+7.+*"%+)$ ! T5 $"=*"+= #%%-. 12 128! 1!!>!!!8!!2;>!!
! 23
#ata e@trat <rmSS%30?200'
"-4 Artificial >ighting
T+:e <-nter-r9 tas*
r at-v-t+!evel
Em
!@
UGR!
Ra
a@!-,6t-n,>/,et
WattsMm2
Car Par*s 3r/St+ 4% 2% "0 %
!-<t !>>-es1st9"t621
St+100 22 '0 10
Oe Areas "t621 St+ %00 1) (0 1%
Sta-rs1st22n/
St+1%0 2% "0 10
T-lets"t620t6
St+100 22 (0 10
Cnrse 1st St+ 100 22 '0 10
Method of Improvement ;
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Method of Improvement ;
!" #se high efficient $% lamps with electronic ballast for office areas&
carpar' floors and plant rooms
(" #se energy saving )L* down lights for toilets and circulation area
+" $imer for office lightings
," Motion sensors in toilets
%" Light shelves to allow daylight to penetrate deeper into the office
" .oning for office areas lighting/
Light fitting with $%lamps with electronic
ballast
Motion sensors in
toilets and staircase
energy saving
)L* down
lights
Re<erene!- 6t- !- 6t-
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T+:e <sa,e
!evelEst-mate/ Area
Re<erene!-,6t-n,#es-,n
Kase/ nSS%30?200
'D
Pr:se/!-,6t-n,#es-,n
!-,6t-n,la/s
>ase/ nre<erene /es-,n
!-,6t-n,la/s >ase/
n:r:se//es-,n
s;.m WMs;.m WMs;.m W W
Car Par*s 3r/St+ %"4.1( % % 243%.) 243%.)
!-<t!>>-es
1st9"t621St+
%)'.%( 10 10 %)'%.( %)'%.(
OeAreas
"t621St+
11122 1% 10 1''(30 111220
Sta-rs1st22n/
St+
%42.1' 10 10 %421.' %421.'
T-lets"t620t6
St+4%' 10 % 4%'0 34(0
Cnrse
1st St+ ")%.%% 10 10 ")%%.% ")%%.%
Ttal1)1"(0.1
'1320)0.1'
#-erene
%)3)0
Sav-n,Improvement12 O77ice re receive (9/i!*t (ue to /i!*t '*e/ve' n(
timer re in't//e(12 Toi/et' re Bit* motion (etector'
"1 'vin!'
POINTS ACHIEVED = #3: "1 = 1:3: = MA 1, point' 4 tennt /i!*tin! inc/u(e(2
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PART 16V.+*"$)*"%+ "+ C)# P)#-
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16 V.+*"$)*"%+ %# C)#)#-
0? abo!e ground=aturally %entilated
+0? below ground#asement Carpark
T% "+-*)$$ CO2 -.+-%#- *% #.=($)*.*. .')+ %# *. M.0)+"0)$V.+*"$)*"%+ /MV,8
+& '0 +-+5*/-5+-
+8+<
0.' J ! 8- 4 8-
@& 20 @+/:/-+8+< CO
2
sensrs are
se/ t
KCA Green ar* Assessment Vers-n NRKM3.0
CATEGORY
a@ PtPresent
Cn/-t-nKase Pts Pr:sal
Im:rve
/ Pts F-nal Pts
Investment SD <rPlat-nm
Annal
Sav-n,
s SD
Pa+>a* +rD
ID Ener,+ Relate/Re;-rements
PART !1 ENERGY EFFICIENCY
16 V.+*"$)*"%+ "+ C)#)#-5
H!< )%7.=#%(+> 2!<
)-.'.+* 4
CO -.+-%#- (-. *%#.=($)*. .')+
%# MV !86 486 2!>!!!8!!
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PART 1;
V.+*"$)*"%+ "+ C%''%+A#.)-
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KCA Green ar* Assessment Vers-n NRKM3.0
CATEGORY a@ Pt
PresentCn/-t-n Kase Pts Pr:sal Im:rve
/ Pts F-nal Pts
Investment SD <rPlat-nm
Annal
Sav-n,s SD
Pa+>a* +rD
ID Ener,+ Relate/Re;-rements
PART!1
ENERGY EFFICIENCY
1; V.+*"$)*"%+ "+ C%''%+ A#.)- 5 ! ! !8!
1; V.+*"$)*"%+ %+ C%''%+ A#.)-
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PART 1H
L"*- & E-0)$)*%#-
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1H L"*- & E-0)$)*%#-
L"*- & E-0)$)*%#- E+.#= .0".+* .)*(#.-
)8 AC 7)#")$. 7%$*)=. )+ 7)#")$. #.(.+0 /VVVF,'%*%# #"7. )+ -$.. '%.
8 M%*"%+ S.+-%#- %# E-0)$)*%#
KCA Green ar* Assessment Vers-n NRKM3.0
CATEGORY
a@ PtPresent
Cn/-t-nKase Pts Pr:sal
Im:rve
/ Pts F-nal Pts
Investment SD <rPlat-nm
Annal
Sav-n,
s SD
Pa+>a* +rD
ID Ener,+ Relate/Re;-rements
PART !1 ENERGY EFFICIENCY
1H L"*- & E-0)$)*%#- 3
VVVF M%*%#>S$.. M%.>
M%*"%+ S.+-%# 3 ! 38!
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PART 1ENERGY EFFICIENT
PRACTICES & FEATURES
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1 E+.#= E0".+* P#)0*"0.- & F.)*(#.-
T%"% M)#"+. T%.#
A--('*"%+G#%-- F$%%# A#.) /GFA, 14>6;1 -'O.#)*"%+)$ %(#- 55 #- O00()+0 #)*. 1!!<N% )*) 0.+*#. "8.8 D)*) C.+*#. E+.#= C%+-('*"%+ /DCEC, !W#
& D)*) C.+*#. A#.) /DCA, ! -'N%#')$"-"+= F)0*%# /NF, 55 #-O.#)*"%+ 9%(#- /O9, 55 #- T"0)$ F$%%# A#.) 25 -' /1H* L.7.$, T"0)$ O0. A#.) H5< % 25 -'R.0.*)0$. L%)- %# =.+.#)$ %0. )#.) 16 W'2
/S%(#0. AS9RAE STD !811,
KCA Green ar* Assessment Vers-n NRKM3.0
CATEGORY
a@ PtPresent
Cn/-t-nKase Pts Pr:sal
Im:rve
/ Pts F-nal Pts
Investment SD <rPlat-nm
Annal
Sav-n,
s SD
Pa+>a* +rD
ID Ener,+ Relate/Re;-rements
PART!1
ENERGY EFFICIENCY
1E+.#= E0".+* P#)0*"0.- &F.)*(#.- 12
9.)* R.0%7.#%# 9%* W)*.# 3 C%'(*)*"%+ % EEI 1 48!
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S-*.' E("'.+* T%*)$ A++()$ B$=E$.0*#"0"* C%+-('*"%+/KW,#
L"=*"+= )"# 0%+ -)0. 52;>HH!
L"=*"+= +%+ )"# 0%+ -)0. 4!>315
E*.#"%# L"=*"+= 6>22;
A"#0%+ P$)+* 1>351>H52
A"# S-*.' F)+- 1!;>H65
M.0)+"0)$ V.+*"$)*"%+ F)+- 35>41!L"*- 135>2;5
E-0)$)*%#- ;>H24
R.0.*)0$. E("'.+* /16W'2,
611>64!
D%'.-*"0 W)*.# P('S-*.'-
3H>56
9%* W)*.# S-*.'- 16>!!!
O*.#-
Ttal 29)"19(%4
C%'(*)*"%+ % E+.#= E0".+0 I+. /EEI,
Ttal Annal K-l/-n, Eletr--t+
Cnsm:t-n TKECD29)"19(%4 *W6M+ear
Callat-n < EEIEEI TKEC L #CEC D M GFA#CADNFMO&D TKECMGFAD NFMO&D 29)"19(%4 M 1"9'41D%%M%%D 200.%2 *W6M+rMm2
Ttal K-l/-n, Per<rmane -s ,ra/e/as G/X as -t <alls =-t6-n t6e level 3< t6e /e,ree < stan/ar/ -.e.>et=een 1)4.)2 8 2"3.1" *W6M+rMm2
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PART 11!RENEWABLE ENERGY
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KCA Green ar* Assessment Vers-n NRKM3.0
CATEGORY
a@ PtPresent
Cn/-t-nKase Pts Pr:sal
Im:rve/ Pts F-nal Pts
Investment SD <rPlat-nm
AnnalSav-n,s SD
Pa+>a* +rD
ID Ener,+ Relate/Re;-rements
PART!1
ENERGY EFFICIENCY
11!R.+.)$. E+.#= / B%+(-P%"+*-, 2! N"$ ! ! !8!
11! R.+.)$. E+.#=
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/II, OT9ER GREENREQUIREMENTS
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PART 2WATER EFFICIENCY
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OECTIVE
To reco!nie n( encour!e t*e u'e o7 Bter e77icient 7ittin!' to re(uce t*eu'e o7 PU Bter in )ui/(in!
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CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!2
WATER EFFICIENCY
21
W)*.# E0".+* F"**"+=-
H C%+7.+*"%+)$ !U-. WELS #)*"+= % 3
**"+=- H H8! 2!!>!!!8!! 26>!!! H
22W)*.# U-)=. )+ L.)D.*.0*"%+ 2
S( M.*.#P#%7". 1 L"+ -( '.*.#- *% BMS 1 18! 1!>!!!8!!
23 I##"=)*"%+ S-*.' 2 N"$ !#)"+)*.# %# $)+-0).
"##"=)*"%+ 1 18! 5!>!!!8!!
24
W)*.# C%+-('*"%+ %C%%$"+= T%.#
2 N"$ !
C%%$"+= *%.# )*.#*#.)*'.+* --*.' "00)+ )0".7. 6 %# .**.#00$.- % 0%+0.+*#)*"%+ 1 18! 1!>!!!8!!
11
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Pr:se/ #es-,n M Assessment Cr-ter-a
21 Water E-ent F-tt-n,s
22 Water Usa,e an/ !ea* #etet-n
23 Atmat- Ra-n Water Irr-,at-n S+stem
2" Water nsm:t-n <r Cl-n, T=ers
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PART 21W)*.# E0".+* F"**"+=-
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.
@ M P o i n t
'
I''ueRe(uce u'e o7 port)/e Bter )9 u'in! Bter e77icient 7ittin!'covere( un(er 8ELS
+-" )ater $fficient @ittings
CATEGORY
a@ PtPresent
Cn/-t-nKasePts
Pr:salIm:rve/
PtsF-nalPts
Investment SD <rPlat-nm
Annal
Sav-n,s SD
Pa+>a* +rD
IID Ot6er Green Re;-rements
PART!2
WATER EFFICIENCY
21
W)*.# E0".+* F"**"+=-
H C%+7.+*"%+)$ !U-. WELS #)*"+= % 3
**"+=- H H8! 2!!>!!!8!!26>!!
! H
Water tt-n, m:ar-sn W.C.D
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Water tt-n, m:ar-sn W.C.D
Description Current Proposed Savings
Dual flush type cisternW.C. for all toilets
Brand/ Model Casero- Jenny WC Wilton - Rondo
WELS Rating √ √ √ √
lo! rate "."# litres/flush $.%# litres/flush #.&#l per flush
'.(# L/reduced-flush '.%# L/reduced-flush #."#l per flush
No' o7 77ecte( toi/et':@emale : 9 nos 2 "5 floors/ale: ' nos 2 "5 floorsHandicap " no 2 "5 floors
Total nos of fittings & "', nos
Water tt-n, m:ar-sn Ur-nalD
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a e , :a s U a D
Description Current Proposed Savings
Sensor type control)ersus !aterless urinal
Brand/ Model*DM &#+, Ecotech EE, +##
WELS Rating √ √ √ √
lo! rate+."( litres/flush # litres/flush +."( litres/flush
No' o7 77ecte( toi/et':
/ale: , nos 2 "5 floors
Total nos of fittings & "0+ nos
Water tt-n, m:ar-sn W&KD
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, : D
Description Current Proposed Savings
aps for !ash asinsle)el type )ersusspring-self-closing type
Brand/ Model Fratelli Frattini 0
Art $1#%"
E2or -++#"
WELS Rating √ √ √ √ √
lo! rate $.'' litres/3in +.4# litres/3in +."' litres/3in
No' o7 77ecte( toi/et':@emale : 9 nos 2 "5 floors/ale: ' nos 2 "5 floorsHandicapped toilet no change from original design
Total nos of fittings & ""( nos
Water tt-n, m:ar-sn -t6en s-n*D
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, : D
Description Current Proposed Savings
Sin5/ Bip aps for6antry
Brand/ Model 7eneral Fratelli Frattini - Art 31166
WELS Rating No √ √ √ √
lo! rate 4.# litres/ 3in $.+& litres/ 3in ".4"litres/ 3in
No' o7 77ecte( toi/et':8antry " no 2 "5 floorsTotal nos of fittings & "5 nos
ORIGINA! W t - < C t / l
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ORIGINA! Water e-en+ < Crrent /el
SN Water filling type
WELS Rating
N o a p p r o v a l r a t i n g
T o t a l n o ! a " e # o n n o " o f f i t t i n
g "
E $ % e l l e n t
& e r y ' o o #
' o o #
1 ()al Fl)"* WC in +ale toilet , , 1 , 1
. ()al Fl)"* WC in fe/ale toilet , , 60 , 60
3 ()al Fl)"* WC in an#%ap toilet , 12 , , 12
Wa"* 4a"in 5it* "pring %lo"ing tap" in +ale toilet , , 1 , 1
Wa"* 4a"in 5it* "pring %lo"ing tap " in fe/ale toilet , , 1 , 1
6 Wa"* 4a"in 5it* t)rn lever in an#i%ap toilet , , 12 , 12
2 rinal an# rinal "pring %lo"ing fl)"* valve in +ale , , 1,. , 1,.
0 Single !o5l "in7 5it* "pring %lo"ing tap in 8antry , , , 12 12
Total no" !a"e# on rating 9A: , 12 3, NA 32
Weig*tage 94: 0 6 , NA
IPROVE#Z W t - < P / / l
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IPROVE#Z Water e-en+ < Pr:se/ /el
SN Water filling type
WELS Rating
N o a p p r o v a l r a t i n g
T o t a l n o ! a " e # o n n o " o f f i t t i n
g "
E $ % e l l e n t
& e r y ' o o #
' o o #
1 ()al Fl)"* WC in +ale toilet 51 , , , 1
. ()al Fl)"* WC in fe/ale toilet 68 , , , 60
3 ()al Fl)"* WC in an#%ap toilet , 12 , , 12
Wa"* 4a"in 5it* "en"or operate# tap" in +ale toilet 51 , , , 1
Wa"* 4a"in 5it* "en"or operate# tap" in fe/ale toilet 51 , , , 1
6 Wa"* 4a"in 5it* t)rn lever in an#i%ap toilet 17 , , , 12
2 rinal an# rinal fl)"* valve in +ale Toilet 102 , , , 1,.
0 Single !o5l "in7 5it* "pring %lo"ing tap in 8antry , , , 12 12
Total no" !a"e# on rating 9A: 3, 12 , NA 32
Weig*tage 94: 0 6 , NA
Water nsm:t-n allat-ns :er /a+M BrD
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: : +
ype
Models
S a ) i n g 8 C 9* -B :
i 3 e 8 3i n s :
l o !
r a t e 8 L :
re;.otal flo!rate
8L/ day:
C ur r e
n t
6 r o p o
s e d < o s of , s er s
< o s of t r i p s
* B
W.C. in Male toilet "." $.% #.& - #.& 4# + "4.#
W.C. in fe3ale toilet "." $.% #.& - #.& 4# $ +"".#
W.C. in handicap t. "." $.% #.& - #.& ' $ $.&
,rinal in Male toilet +."( #.# +."( - +."( 4# ' '$4."#
W=B in Male toilet $.'' +.4 +."' > #.1+ 4# $ +1#."#
W=B in e3ale toilet $.'' +.4 +."' > #.1+ 4# $ +1#."#
ap in 6antry 4.## $.+& ".4" + ".4" +&# ' +%"4.4#Total sa!ing for water consumption 1)C B rinal3 &9'90 litre*day*floor Total sa!ing for water consumption 1)H# B 8antry3 &"(,0 litre*day*floor .rand total sa!ing & +7'+',0 >* day*floor
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PART 22W)*.# U-)=. )+ L.)
D.*.0*"%+
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+
. / 8 o i n t s
Purpo'e'13Promote t*e u'e o7 'u)>meterin! 7or )ettercontro/ n( monitorin! o7 m0or Bter u'!e3,3To i(enti79 Bter /e6in! /oction3
22 W)*.# U-)=. & L.) D.*.0*"%+
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!2
WATER EFFICIENCY
22
W)*.# U-)=. )+ L.)
D.*.0*"%+ 2
S( M.*.#
P#%7". 1 L"+ -( '.*.#- *% BMS 1 18! 1!>!!!8!!
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PART 23I##"=)*"%+ S-*.'
23 Irr-,at-n S+stem
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"
. / 8 o i n t s
, +
Purpo'e
13Re(uce port)/e Bter con'umption u'in!
/terntive'3E3!3 rinBter 7or /n('cpe irri!tion t Roo7top@r(en
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!2
WATER EFFICIENCY
23I##"=)*"%+ S-*.' 2 N"$ !
#)"+)*.# %# $)+-0).
"##"=)*"%+ 1 18! 5!>!!!8!!
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 24W)*.# C%+-('*"%+ %
C%%$"+= T%.#
7/21/2019 GMM - Simulation to achieve Gold Plus
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24 W)*.# 0%+-('*"%+ %# C%%$"+= T%.#-
Propo'e( De'i!n
< To achieve cycles of concentration of 6 or higherto reduce make-up and blo don from !ooling
Toer"
< #roven $ltra %o &re'uency ($%&) *
!opper +oni,ation Treatment
"
. / 8 o i n t s
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!2
WATER EFFICIENCY
24
W)*.# C%+-('*"%+ %C%%$"+= T%.#
2 N"$ !
C%%$"+= *%.# )*.#*#.)*'.+* --*.' "00)+ )0".7. 6 %# .**.#00$.- % 0%+0.+*#)*"%+ 1 18! 1!>!!!8!!
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 3ENVIRONMENTAL
PROTECTION
Part 3 L Env-rnmental
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CATEGORY
a@ PtPresent
Cn/-t-nKasePts
Pr:salIm:rve/
PtsF-nalPts
Investment SD <rPlat-nm
Annal
Sav-n,s SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!3
ENVIRONMENTALPROTECTION
31 S(-*)"+)$. C%+-*#(0*"%+ 14 N"$ !
),E0".+* 0%+0#.*. (-)=. 185
68! 35!>!!!8!!
,U-. % E+7"#%+'.+*)$#".+$ #%(0*- 0.#*".(+.# SGLS 20,U-. % #%(0*- "* '"+3!< #.00$. 0%+*.+* 285
32 G#..+.# 6 G+P 18! 2 R.00$. %#*"0($*(#)$)-*. 1 38! 6>!!!8!!
33
E+7"#%+'.+*)$M)+)=.'.+* P#)0*"0. H A$$ P#%7". H ! H8!
34
P($"0 T#)+-%#*A00.--""$"* 2 N.)# MRT 1 P#%7". "00$. $%* 1 28! H>!!!8!!
35 R.#"=.#)+*- 2 R134) #%7". 1 I+-*)$$ $.) .*.0*%# 1 28! 2!>!!!8!!
21
Part 3 Env-rnmentalPrtet-n
7/21/2019 GMM - Simulation to achieve Gold Plus
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31 Ssta-na>le Cnstrt-n
32 Greener+
33 Env-rnmental ana,ement Prat-e
3" P>l- Trans:rt Aess->-l-t+
3% Re<r-,erants
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 31S(-*)"+)$. C%+-*#(0*"%+
31 Ssta-na>le Cnstrt-n
Present KaseInvestment
Annal Pa+>a
7/21/2019 GMM - Simulation to achieve Gold Plus
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Crrent sr-n, 0 :-nt Use 6-,6 stren,t6 nrete [G'0D an/ :sttens-ne/ Br
s+stem t a6-eve re/t-n -n Cnrete Usa,e In/e@ t arn/0."'DT sre a//-t-nal 1.% :-ntsD
SG!S ert-e/ ar:ets <r all e s:aes T sre a//-t-nal 1:-ntD
SG!S ert-e/ >r-*s <r all >r-* =r*sT sre a//-t-nal 1:-ntD
Re+le/ ::er sla, a,,. <r :reast :anels T sre a//-t-nal
1 :-ntD Re+le/ e-l-n, >ar/s <r all e s:aes T sre a//-t-nal 1
:-ntD Re+le/ a,,re,ate <r =6eel st::ers T sre a//-t-nal 0.%
:-ntD
CATEGORY
a@ PtPresent
Cn/-t-nKasePts
Pr:salIm:rve/
PtsF-nalPts
SD <rPlat-nm
lSav-n,s SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART
!3
ENVIRONMENTAL
PROTECTION
31 S(-*)"+)$. C%+-*#(0*"%+ 14 N"$ !
),E0".+* 0%+0#.*. (-)=. 185
68! 35!>!!!8!!
,U-. % E+7"#%+'.+*)$#".+$ #%(0*- 0.#*".(+.# SGLS 20,U-. % #%(0*- "* '"+3!< #.00$. 0%+*.+* 285
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 32G#..+.#
32 Greener+
7/21/2019 GMM - Simulation to achieve Gold Plus
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% Inrease ,reener+ area t re/e 6eat -slan/ eet Or-,-nal :rv-s-n < lan/sa:e area at ,rn/ Br an/ s*+
terrae\ =-t6 Planters at t6e ever+ Oe Flr. Crrent Greener+Prv-s-n GnPD1.0 Crrent sr-n, 2 :-ntsD
Use < m:st re+le/ <rm 6rt-ltre =aste T srea//-t-nal 1 :-ntD
CATEGORY
a@ PtPresent
Cn/-t-nKasePts
Pr:salIm:rve/
PtsF-nalPts
Investment SD <rPlat-nm
Annal
Sav-n,s SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!3
ENVIRONMENTALPROTECTION
32
G#..+.#
6 G+P 18! 2R.00$. %#*"0($*(#)$
)-*. 1 38! 6>!!!8!!
+
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 33E+7"#%+'.+*)$
M)+)=.'.+* P#)0*"0.
33 Env-rnmental ana,ement
7/21/2019 GMM - Simulation to achieve Gold Plus
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3.3 E*:/-+5 M++/:/- P+-/
Crrent :rv-s-n <?aD Eet-ve -m:lementat-n < env-rnmental <r-en/l+ :r,ramme>D Un/er CON$UAS assessmentD #evel:er9 ma-n >-l/er9 8E nsltant an/ ar6-tet are ISO
1"000 ert-e//D One G an/ ne GP -n t6e :ret teameD Prv-s-n < >-l/-n, sers ,-/e t a6-eve -nten/e/ env-rnment
:er<rmane<D Prv-s-n < re+l-n, >-ns
Crrent sr-n, ( :-nts
CATEGORY
a@ PtPresent
Cn/-t-nKasePts
Pr:salIm:rve/
PtsF-nalPts
Investment SD <rPlat-nm
Annal
Sav-n,s SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!3
ENVIRONMENTALPROTECTION
33
E+7"#%+'.+*)$M)+)=.'.+* P#)0*"0. H A$$ P#%7". H ! H8!
,Prat-e
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 34P($"0 T#)+-%#*
A00.--""$"*
3" L P>l- Trans:rt
7/21/2019 GMM - Simulation to achieve Gold Plus
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- Current design: Provision of good access (<500m) to MRT station andbus stops (Current scoring = point)
Provision of ade!uate bic"c#e par$ing #ots ( To score additiona# point )
CATEGORY
a@ PtPresent
Cn/-t-nKasePts
Pr:salIm:rve/
PtsF-nalPts
Investment SD <rPlat-nm
Annal
Sav-n,s SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!3
ENVIRONMENTALPROTECTION
34
P($"0 T#)+-%#*A00.--""$"* 2 N.)# MRT 1 P#%7". "00$. $%* 1 28! H>!!!8!!
:Aess->-l-t+
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 35R.#"=.#)+*-
3% L Re<r-,erants
7/21/2019 GMM - Simulation to achieve Gold Plus
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T% "+-*)$$ #.#"=.#)+* $.) .*.0*"%+ --*.' )*0#"*"0)$ )#.)- % $)+* #%%'- 0%+*)"+"+= 0"$$.#-)+ %*.# .("'.+* "* #.#"=.#)+*-8
CATEGORY
a@ PtPresent
Cn/-t-nKasePts
Pr:salIm:rve/
PtsF-nalPts
Investment SD <rPlat-nm
Annal
Sav-n,s SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!3
ENVIRONMENTALPROTECTION
35 R.#"=.#)+*- 2 R134) #%7". 1 I+-*)$$ $.) .*.0*%# 1 28! 2!>!!!8!!
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 4INDOOR ENVIRONMENTAL
QUALITY
Part " L In/r Env-rnment
7/21/2019 GMM - Simulation to achieve Gold Plus
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CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!4
INDOOR ENVIRONMENTQUALITY
41 T.#')$ C%'%#* 2 P#%7". 2 ! 28!
42 N%"-. L.7.$ 2 I+ S.0 2 ! 28!
43 I+%%# A"# P%$$(*)+*- 2 P#%7". 2 ! 28!
44 9"= F#.(.+0 B)$$)-* 2 M)=+.*"0 B)$$)-* ! !< (-)=. % .$.0*#%+"0)$$)-* 2 28!
(
$al-t+
7/21/2019 GMM - Simulation to achieve Gold Plus
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"1 T6ermal Cm<rt
"2 N-se !evel
"3 In/r A-r $al-t+
"" &-,6 Fre;en+ Kallast
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 41 T9ERMAL COMFORT
"1 T6ermal Cm<rt
7/21/2019 GMM - Simulation to achieve Gold Plus
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De'i!n Temp3 4De!C2
Re/tiveHumi(it942
Accept)/e Rn!e ,,3: to ,:3: Q K#
O77ice' ," +> 1 Q K#
Reti/ Re'turnt ," +> 1 Q K#
Li7t Lo))ie' ,% +> 1 Q K#
Circu/tion Are ,% +> 1 Q K#
Present #es-,n
A&U /es-,ne/ t all= <r l-n, la/ var-at-ns /e t
Btat-ns -n am>-ent a-r tem:eratre <r :antst6ermal m<rt
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!4
INDOOR ENVIRONMENTQUALITY
41 T.#')$ C%'%#* 2 P#%7". 2 ! 28!
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 42NOISE LEVEL
"2 N-se !evel
7/21/2019 GMM - Simulation to achieve Gold Plus
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18 S)0. $)++"+= T% -.)#)*. "= +%"-. $.7.$ )#.)- #%'0%''(+)$> %0. %# )#.)-8
28 U-. -%(+ "+-($)*"%+ *"$.- )#%(+ "= +%"-. =.+.#)*"+=)#.)- /$)+* #%%'-> .*0,8
38 R"=* M)*.#")$- F$%%# -%(+ "+-($)*"%+8
W)$$- D%($. -"++. 0)7"* )$$-8
F$%%#- #%.# "+-($)*"%+ *% )'.+-%(+8
C."$"+=D(0*"+ & O.+"+=-
U-. 0$)"+=#%0%%$ ')*.#")$-
A'".+* -%(+ $.7.$- )$$ 0%'$ *% SS
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er Green
Re;-rements PART!4
INDOOR ENVIRONMENTQUALITY
42 N%"-. L.7.$ 2 I+ S.0 2 ! 28!
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 43INDOOR AIR POLLUTANTS
Part " L In/r Env-rnment$ l-t
7/21/2019 GMM - Simulation to achieve Gold Plus
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CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!4
INDOOR ENVIRONMENTQUALITY
43 I+%%# A"# P%$$(*)+*- 2 P#%7". 2 ! 28!
(
$al-t+
"3 In/r A-rP ll t t
7/21/2019 GMM - Simulation to achieve Gold Plus
http://slidepdf.com/reader/full/gmm-simulation-to-achieve-gold-plus 111/138
Plltants
M"+"'"?. A"#%(#+. 0%+*)'"+)+*-
18 U-. % $% 7%$)*"$. %#=)+"0 0%'%(+- /VOC, )"+*- 0.#*". (+.# G#..+ L).$$"+= S0.'. L% %%(#
"$$ (-. )"+* "* : 25= $"*#. %VOC-
C%7.#)=. %# 4< % )$$ "+*.#+)$ )$$)#.)- 28 U-. % ).-"7.- 0.#*". (+.#
S"+=)%#. G#..+ $).$"+= S0.'. %#0%'%-"*. %% #%(0*- +%+ *%"0 $%VOC
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!4
INDOOR ENVIRONMENTQUALITY
43 I+%%# A"# P%$$(*)+*- 2 P#%7". 2 ! 28!
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PART 449IG9 FREQUENCY
BALLASTS
"" &-,6 Fre;en+ Kallasts
7/21/2019 GMM - Simulation to achieve Gold Plus
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T% "'#%7. %#$)0. $"=*"+= ()$"* "* (-. % "= #.(.+0 )$$)-*-"+ @(%#.-0.+* $('"+)"#.-8
M.*% % I'#%7.'.+* A* $.)-* !< % GFA9F .$.0*#%+"0 )$$)-* "+ @(%#.-0.+* $)'- %# %0. )#.)-> 0)# )# $.7.$-)+ $)+* #%%'-
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er Green
Re;-rements PART!4
INDOOR ENVIRONMENTQUALITY
44 9"= F#.(.+0 B)$$)-* 2 M)=+.*"0 B)$$)-* !!< (-)=. % .$.0*#%+"0
)$$)-*2 28!
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 5OT9ER GREEN FEATURES
PART 5 OT9ER GREEN FEATURES
7/21/2019 GMM - Simulation to achieve Gold Plus
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OECTIVE
To encour!e ot*er !reen 7eture' not 'tte( in t*e previou' 'ection B*ic* reinnovtive n( *ve po'itive environment/ impct'
PtPresent Kase
P l I / F- lInvestment
SD <AnnalS -
Pa+>a
PART 5 OT9ER GREEN FEATURES
7/21/2019 GMM - Simulation to achieve Gold Plus
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CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
SD <rPlat-nm
Sav-n,sSD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART
!5
OT9ER GREEN
FEATURES
51
G#..+ F.)*(#.- &I++%7)*"%+- ;)8 J.* )+ %# C)# P)# #%7". !85 ! !85
8 A9U 0%+.+-)*.#.00$. %# 0%%$"+= *%.#)*.# *%( #%7". !85
! !85
08 P#%7". 5 0%'%-*"+- *% #.00$. %#=)+"0)-*. !
P#%7". 5 0%'%-* "+- *%#.00$. %#=)+"0 )-*.
!85 !85 2>!!!8!!8 P#%7". C)#)#=(")+0. --*.' !
#%7". 0)# )# =(")+0.--*.' !85 !85 5!>!!!8!!
.8 P#%7"-"%+ % G#..+R%%
!
P#%7"-"%+ % G#..+ R%%)+ #%% *% =)#.+ %#
'%#. *)+ 5!< % *. #%%)#.)- 1 18! 1!!>!!!8!!
8 R)"+)*.# 9)#7.-*"+=
!
R)"+)*.# 9)#7.-*"+= #%'=#..+ #%%8 1 %"+* %# )*$.)-* 25< % *. =#..+
)#.)-8 1 18! 4!>!!!8!!"
PART 5 OT9ER GREEN FEATURES
7/21/2019 GMM - Simulation to achieve Gold Plus
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%1 Green Featres 8 Innvat-ns
a. et Fans <r Car Par*
>. A&U n/ensate re+le <r Cl-n,T=er =ater t::
. Prv-/e % m:st >-ns t re+le
r,an- =aste/. Prv-/e Car :ar* G-/ane S+stem
e. Prv-s-n < Green R<s
<. Ra-n=ater &arvest-n,
7/21/2019 GMM - Simulation to achieve Gold Plus
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PART 51G#..+ F.)*(#.- &
I++%7)*"%+-
4-"1a3 Det @ans for Car park %entilation
PART 51 GREEN FEATURES & INNOVATIONS
7/21/2019 GMM - Simulation to achieve Gold Plus
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#resent esign
$se ductless .et fans hich are more energy efficient"
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!5
OT9ER GREENFEATURES
51
G#..+ F.)*(#.- &I++%7)*"%+- ;)8 J.* )+ %# C)# P)# #%7". !85 ! !85
4-"1b3 Collection of AH Condensate for Cooling Tower
PART 51 GREEN FEATURES & INNOVATIONS
7/21/2019 GMM - Simulation to achieve Gold Plus
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1 3 g
#resent esign
EnsulatedCollection Tank
1Capacity : "+litres3
Coo/in!
ToBer O!erflow
pipe
Condensate water@rom AHs F @Cs
'00 mmHeight
EnsulatedCollection Tank
1Capacity : "+litres3
Coo/in!
ToBer O!erflow
pipe
Condensate water@rom AHs F @Cs
'00 mmHeight
EnsulatedCollection Tank
1Capacity : "+litres3
Coo/in!
ToBer O!erflow
pipe
Condensate water@rom AHs F @Cs
'00 mmHeight
EnsulatedCollection Tank
1Capacity : "+litres3
Coo/in!
ToBer O!erflow
pipe
Condensate water@rom AHs F @Cs
'00 mmHeight
EnsulatedCollection Tank
1Capacity : "+litres3
Coo/in!
ToBer O!erflow
pipe
Condensate water@rom AHs F @Cs
'00 mmHeight
EnsulatedCollection Tank
1Capacity : "+litres3
Coo/in!
ToBer O!erflow
pipe
Condensate water@rom AHs F @Cs
'00 mmHeight
EnsulatedCollection Tank
1Capacity : "+litres3
Coo/in!
ToBer O!erflow
pipe
Condensate water@rom AHs F @Cs
'00 mmHeight
CATEGORY
a@ PtPresent
Cn/-t-n
Kase
Pts
Pr:sal Im:rve/
Pts
F-nal
Pts
Investment SD <r
Plat-nm
AnnalSav-n,s
SD
Pa+>a
* +rDIID Ot6er GreenRe;-rements
PART!5
OT9ER GREENFEATURES
51
G#..+ F.)*(#.- &I++%7)*"%+- ;8 A9U 0%+.+-)*.#.00$. %# 0%%$"+= *%.#)*.# *%( #%7". !85
! !85
4-"1c3 Compost bins to recycle organic waste
PART 51 GREEN FEATURES & INNOVATIONS
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/rganic aste
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!5
OT9ER GREENFEATURES
51
G#..+ F.)*(#.- &I++%7)*"%+- ;08 P#%7". 5 0%'%-*"+- *% #.00$. %#=)+"0)-*. !
P#%7". 5 0%'%-* "+- *%#.00$. %#=)+"0 )-*.
!85 !85 2>!!!8!!
4-"1d3 8ro!ide Car park .uidance System
PART 5 OT9ER GREEN FEATURES
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http://slidepdf.com/reader/full/gmm-simulation-to-achieve-gold-plus 122/138
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!5
OT9ER GREENFEATURES
51
G#..+ F.)*(#.- &I++%7)*"%+- ;8 P#%7". C)#)#=(")+0. --*.' !
#%7". 0)# )# =(")+0.--*.' !85 !85 5!>!!!8!!
4-"1e3 .reen Roofs
PART 51 GREEN FEATURES & INNOVATIONS
P t KInvestment Annal
P >
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< isually pleasing promotes biodiversity
< 3eutralise heat from 4 hading effect
< #rovide green breakout spaces for users< educe $rban 9eat +sland- :ir ;uality &iltering
<enefit
< stimated =reen oof :rea 550m2
< stimated +nvestment >100000
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!5 OT9ER GREENFEATURES
51
G#..+ F.)*(#.- &I++%7)*"%+- ;
.8 P#%7"-"%+ % G#..+R%%
!
P#%7"-"%+ % G#..+ R%%)+ #%% *% =)#.+ %#
'%#. *)+ 5!< % *. #%%)#.)- 1 18! 1!!>!!!8!!
4-"1f3 Rainwater Har!esting
PART 51 GREEN FEATURES & INNOVATIONS
Investment Annal
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< ainater 9arvesting system to integrate ithrun off from green roof system
< 9arvested ater ill formed main supply forlandscape irrigation
< =reen oof area 550m2
< stimated +nvestment >?0000
CATEGORY a@ Pt
PresentCn/-t-n
KasePts
Pr:sal Im:rve/Pts
F-nalPts
Investment SD <rPlat-nm
AnnalSav-n,s
SD
Pa+>a* +rD
IID Ot6er GreenRe;-rements
PART!5
OT9ER GREENFEATURES
51G#..+ F.)*(#.- &I++%7)*"%+- ;
8 R)"+)*.# 9)#7.-*"+=
!
R)"+)*.# 9)#7.-*"+= #%'=#..+ #%%8 1 %"+* %# )*$.)-* 25< % *. =#..+
)#.)-8 1 18! 4!>!!!8!!
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PART 5CARBON FOOTPRINT
CARBON FOOTPRINT
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S%(#0. S"+=)%#.- N)*"%+)$ C$"')*. C)+=.
S*#)*.=
Singapore ;ate
CARBON FOOTPRINT
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S%(#0. S"+=)%#.- N)*"%+)$ C$"')*. C)+=.S*#)*.=
8ast CO+ $missions
CARBON FOOTPRINT
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S/N Land Use Gross Area(sqm)
Energy Index(kWh/m2/ye
ar)
Total Annal Energy(kWh/year)
Total !"2 #ase on!oal ($%&2' g
!"2/kWh)
Total !"2 #ase on
Natral Gas($%*g
!"2/kWh)
1 Office 165,000 187 30,855,000 28,540,875 13,267,650
2 Retails 148,500 426 63,261,000 58,516,425 27,202,230
3 Hotel 16,500 360 5,940,000 5,494,500 2,554,200
4 Car Park 300,000 70.16 21,049,389 19,470,685 9,051,237
* note !aseline on 25 "ercentile of #$il%in& ener&' cons$("tion %ata #' )ner&' $staina#ilit' +nit of in&a"ore
Energy sor+e Un,ts g !"2 -er n,t kWh
Coal 0.925
at$ral &as 0.43
$clear 0.006
H'%roelectric 0.004
-oo% 1.5
Poto/olta c solar 0.105
-in% Poer 0.0125
$nergy Source
CARBON FOOTPRINT
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S%(#0. S"+=)%#.- N)*"%+)$ C$"')*. C)+=.S*#)*.=
$nergy Source
CARBON FOOTPRINT
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R.(0*"%+ % CO2 E'"--"%+- /.-*8,
N)*"%+)$A7.#)=.
/W#'2,
P#%%-./W#'
2,
GFA/-',
S)7"+=/W#,
231 162 14>6;1 1>!12>2
Reduction of CO+ $missions
CO, emi''ion in Sin!pore = #3:,#$ 6! CO, 68*
Re(uction o7 CO, emi''ion' 4e't32= 4#3:,#$1###2 1-#1,-,&&
= :,K ton' 9r
:,K tree' Bi// )e 've( ever9 9er Source: http:**wwwcarbonfootprintcom*uktreesasp2
Source: E8CC +00,
CO2 EMISSION S)'$.
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S/N Land Use Gross Area(sqm)
Energy Index
(kWh/m2/year)
Total Annal Energy(kWh/year)
Total !"2 #ase on
!oal ($%&2' g!"2/kWh)
1 Office 165,000 187 30,855,000 28,540,875
2 Retails 148,500 426 63,261,000 58,516,425
3 Hotel 16,500 360 5,940,000 5,494,500
4 Car Park 300,000 70.16 21,049,389 19,470,685
* note !aseline on 25 "ercentile of #$il%in& ener&' cons$("tion %ata #' )ner&'
S(-*)"+)"$"* U+"* % S"+=)%#.
Energy sor+e Un,ts g !"2 -er n,t kWh
Coal 0.925
at$ral &as 0.43
$clear 0.006
H'%roelectric 0.004
-oo% 1.5
Poto/olta c solar 0.105
-in% Poer 0.0125
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Q&A
OPTIONO+.# 0)+ 0%%-. *% '%7. *% G%$P$(- R)*"+= *% '..* S285M (=.* / H
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ETTV "+0#.)-. *% 41W'28 P%"+*- #.')"+.
(+0)+=.
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4 4 ; M
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GreeGreenn
ar* ar*
Tr+Tr+A,a-nA,a-n
Cert-e/Cert-e/ Gl/Gl/ Gl/Gl/PlsPls Plat-nmPlat-nm
SreSre 0 ")0 ") %0 4"%0 4" 4% ("4% (" (% ()(% () )0 100)0 100
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Overall TARGET Assessment
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Part 1. ENERGY EFFICIENCY %0
Part 2. WATER EFFICIENCY
Part 3. ENVIRONENTA!
PROTECTION
Part ". IN#OORENVIRONENTA! $UA!ITY
Part %. OT&ER GREEN
FEATURES
11
21(
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)"
current + improvement = tr!et
"# + $% = &%
Propo'e( )u(!etto c*ieve ourtr!etS,-.$$-###
Overall REVISE#
Assessment
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Assessment Part 1. ENERGY EFFICIENCY %0
Part 2. WATER EFFICIENCY
Part 3. ENVIRONENTA!
PROTECTION
Part ". IN#OORENVIRONENTA! $UA!ITY
Part %. OT&ER GREEN
FEATURES
11
1%(
3(4
Propo'e( )u(!et