3d volumetric construction
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MODULARVOLUMETRICCONSTRUCTION
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Modular Construction -what is it?
• Factory production of a tted out
room.
• Pre-engineered building units.
• Delivered to site as modularunits and assembled on site to
form a building.
• It may comprise highly servicedrooms such as plant, bathroomsor kitchens or bedrooms,lounges, stairwells.
• It is a self supporting structure
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!" #!$$%&'$D()*+
#$%+(#I$
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/enets include0
• %hort construction time1programme
• !igh early return on capital investment
• %ignicant cash 2ow advantages over
traditional build• +educed need for skilled workforce on
site
• )ess waste
• !igh 3uality control
• +eliable delivery timescale
• Price certainty• %ustainable - can be relocated or recycled
• )ight weight gives foundation savings
Modular Construction - why usit?
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The factory-controlled process generates less waste, creates fewer sitedisturbances and allows for tighter construction.
Less Site Disturbance
On-site traffic is greatly minimized from workers, equipment and suppliers.
Greater Flexibility and Reuse
Modular buildings can be disassembled and the modules relocated or
refurbished for new use, reducing the demand for raw materials and
minimizing the amount of energy expended to create a building to meet the
new need.
Less Material Waste
hen building in a factory, waste is eliminated by recycling materials,
controlling in!entory and protecting building materials.
Improved Air Quality
"ecause the modular structure is substantially completed in a factory-controlled setting using dry materials, the potential for high le!els of
moisture being trapped in the new construction is eliminated.
Greener
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faster$ #onstruction of modular buildings occurs simultaneously with site
work, allowing pro4ects to be completed in half the time of traditionalconstruction.
$ Rducd Construction Schdul/ecause construction of modular buildings can occur simultaneously
with the site and foundation work, pro4ects can be completed 678 to978 sooner than traditional construction.
$ Eli!ination o" $athr Dlays :7 - ;78 of the construction is completed inside a factory, whichmitigates the risk of weather delays. /uildings are occupied sooner,creating a faster return on investment.
$ %uilt to Cod with &uality Matrials'odular buildings are built to meet or e
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%'*+&+$ 'odular buildings are built with the
same materials and to the same building codes and architecturalspecicationsas traditional construction. $nce assembled, they are virtuallyindistinguishable from their site-built counterparts.
$ Sa"r Construction
he indoor construction environment reduces the risks of accidents andrelated liabilities for workers.
$ %ttr En'inrd %uildin' ( %IMP'# relies on advanced /I' for visuali>ation to assess the energyperformance and identify the most cost-e?ective e@ciency measures. P'# is
ideal for the use of this technology where the construction process is already acollaboration of systems, materials and peopleAmuch like the software itself.
$ Li!itlss Dsi'n O))ortunitis'odular units may be designed to t in with e
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%+&B!$ %uildin' strn'th
$ 'odular homes are designed to be stronger than traditionalhomes by, for e
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Th *n+ts o" usin' th !odular syst! "or o,rsas construction
he ability to GtemplateH all designs and specications for generictypes of buildings
Fast-track set-up and operation of assembly plants.
#onsistency of 3uality and build
#ost benets of design and specication consistency
+eduction in design cost
Plants can be utilised for other purposes
Modular construction whn to us
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Modular construction - whn to usit?
• %hort programming re3uired
• +epetitive building type
• %kill shortage on site
• #ertainty of delivery
• !igh 3uality
• Future relocation
• eather conditions have limited e?ect
• %ecurity issues
• Price certainty
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#onstruction of walls and 2oors in modular units
$alls loors
alls of modules comprise # sections of9 to C97 mm depth.
Floors of modules comprise # sections ofC97 to 97 mm depth.
)ongitudinal walls are usually load-bearing and the end walls provide forstability.
#eiling is manufactured as a wall panel.
$pen-sided modules can be created by
longitudinal 2oor and ceiling 4oists = endwalls become load bearing.
$pen-sided modules use deeper 2oor
4oists or lattice 4oists of 97 to J77 mmdepth.
%tability provided by cross-2ats ordiaphragm action of boarding.
#orridor >one can be used to provide in-plane bracing in long buildings.
Double skin walls provide e
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Architctural as)cts
• +ectangular or * high degree ofrepetition is re3uired
• !igh 3uality factory nished
rooms• Fully serviced rooms Kready to
plug inK via risers and corridordistribution routes
• ;7 minutes re rating availablewith double boards
• $utstanding sound attenuation• )ow rise or high rise pro4ects• hermal insulation easily
upgraded• 'a
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• +ooms must have repetition andpreferably be rectangular
• For transportation, room si>es are2e
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• !ot dip galvanised coated B9
g1mM steel
• 'inimum C77 year design lifee
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Acoustic )r"or!anc
his 'odular building system can besuper insulated with higher than usualbuilding regulation re3uirements for boththermal and acoustic insulation.
In addition to this, the systemincorporates a method of separating eachindividual module acoustically whichmeans that noise cannot be transmittedeasily through the structure.
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ypes $f 'odules$ J-sided modules
$ Partially open-sided module
$ $pen-sided Ncorner-supportedO modules
$ 'odules supported by a primarystructural frame
$ on-load bearing modules
$ 'i
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J-sided modules
$ In this form of construction, modules aremanufactured with four closed sides to createcellular type spaces designed to transfer thecombined vertical load of the modules aboveand in-plane loads Ndue to wind actionO throughtheir longitudinal walls. he cellular spaceprovided is limited by the transportation andinstallation re3uirements. Depending onlocation and e
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Partially open-sided modules
$ J sided modules can be designed with partially opensides by the introduction of corner and intermediateposts and by using a sti? continuous edge beam in the2oor cassette. he ma
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$pen sided Ncorner-supportedO modules
$ 'odules may be designed to providefully open sides by transfer of loads
through the longitudinal edge beams to
the corner posts. he framework of themodule is often in the form of hot rolledsteel members, such as %3uare !ollow%ection N%!%O columns and Parallel
Flange #hannel NPF#O edge beams, that
are bolted together.
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'i
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'odules supported by a primary structure
$ 'odular units may be designed to be supported by a primarystructure at a podium or platform level. In this case, thesupporting columns are positioned at a multiple of the width ofthe modules Nnormally or 6 modulesO.
$ he beams are designed to support the combined loads from
the modules above Nnormally a ma
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•
Following thebuilding designfree>e the modulesare fabricated in 4igs made fromgalvanised )B%cages
• hey have adesign life ine
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• Following deliveryof the modules tothe t-out plant
assembly iscommenced
• he modules aretted out inaccordance withthe building systemstandard processes
• Ritchens andbathrooms areinstalled along withplumbing andelectrical systems
• Doors, windows and2ooring are alsoinstalled to clientQsre3uirements
Modul +t out
Modul +t out
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Modul +t out
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• Following assembly,
the modules aredelivered to site
• 'odules are lifted intoposition andconnected together
•*ll modules arewaterproof andweatherproofimmediately
• %ystem designsatises /uilding
+egulationsprogressive collapsere3uirements
Modul )lac!nt
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Onc installd/ th!oduls ar )lu''d and)lu!*d in
Modul sr,ics connction
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#ollowing placement of the modules$
• The cladding and roofing go on
simultaneously
• %ladding could also be fitted in the
factory reducing on site programme.
• "alconies can be fitted
• &xternal works are completed
• 'er!ices are commissioned
Modul claddin' and roo+n'
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Modular construction - su!!ary
Lolumetric systems
• %tandard si>e units
• )oad bearing three dimensional frames
• Prefabricated and tted out under factory conditions
• &ach module self-contained
• Ideal for re-locatable applications
• Identical units, e.g. Lillas, apartment units or hotel rooms
•
+oom si>ed units may serve as main structural components of an entire building
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Modular construction - su!!ary
)ight gauge steel frames provide0
• Inherent rigidity• #an be built to strict tolerances• *dvantages over timber frame systems•
Dimensional stability• Durability• 'odular systems are super-insulated• alls and 2oors typically give 96d/ reduction for sound• ypical u-values achieved for e
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/uilding type0 'odular studentaccommodation
)ocated in the heart of ottingham, thismodular pro4ect consists of a :-storey, 677bedroom, student accommodationbuilding, and the smaller 7 2ats J-storey/elgrave %uite..
Chaucr Strt
Royal Northrn Coll' o" Music Manchstr
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%tudent accommodation)ocated on the tight site in central'anchester is the :77 bedroom a hallof residence for the +oyal orthern
#ollege of 'usic, comprising single anddouble bedrooms with en-suitebathrooms and kitchens for each 2atand common rooms.
he nine-storey block was totallyprefabricated o?-site using the light
gauge modular system.
Royal Northrn Coll' o" Music/ Manchstr
N th 0 l R d L d
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his site was e
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North 0ol Road/ London 1y wor1r housin'
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This site lies directly between a mainline railway and a busy
road and thus required high le!els of sound insulation, this was
easily pro!ided with the modular framing solution. Offering !erygood acoustic performance both against external noise and
also the transmittal of sound between units internally.
Rodny Road/ Twic1nha! - social ( )ri,athousin'
Rodny Road/ Twic1nha! - social ( )ri,at
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Rodny Road/ Twic1nha! social ( )ri,athousin'
Rodny Road/ Twic1nha! - social ( )ri,at
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Rodny Road/ Twic1nha! social ( )ri,athousin'
RNCM/ Manchstr
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RNCM/ Manchstr
$il!slow/ Manchstr
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$il!slow/ Manchstr
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South Chas/ 2arlow - social ( )ri,at housin'
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/ ) '
South Chas/ 2arlow - social ( )ri,at housin'
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/ ) '
raditionally clad to resembles traditional housing
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!*R "$(
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