joan tresserras pujol-xicoy tall building draft design

24
Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

Upload: alan-ratcliff

Post on 29-Mar-2015

220 views

Category:

Documents


1 download

TRANSCRIPT

Page 1: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

Joan Tresserras Pujol-Xicoy

TALL

BUILDING

DRAFT DESIGN

Page 2: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

Columns:• 1 – 5 floors:

1. Section dimensions

Page 3: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

• 5 – 10 floors:

• 11 – 15 floors:

• 16 – 20 floors:

• 21 – 25 floors:

• 26 – 30 floors:

• 31 – 35 floors:

1. Section dimensions

Page 4: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

Beams:

Slabs:

1. Section dimensions

Page 5: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

2. Design requirements

Page 6: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

2. Design requirements

Page 7: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

Wind loading:

• According to the chinese code:

• Return period of 50 years Wp = 0,55KN/m2.

• Return period of 100 years Wp = 0,60KN/m2

• Building situated in Tianjin, China Roughness type C

• When using the program we choose the Chinese 2002 code

3. Loading

Page 8: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

Earthquake loading:

• Design with a basic fortification intensity of 7.

• In consequence a ground acceleration of 0,15g is used.

• Site classification is a site-class IV.

• When using the program we choose the Chinese 2002 code.

3. Loading

Page 9: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

Dead load:

• Automatically calculated the program (Self

Weight Multiplier = 1).

• It is necessary to add dead load to the slabs

inside the shear wall areas, due to their very

small thickness. These slabs help to transfer

lateral stresses.

• Add a dead load = 7,5kN/

3. Loading

Page 10: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

Live load:

• Following the chinese code:

3. Loading

Page 11: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

• Basically, the material used will be concrete.

Default concrete given by ETABS is a C40

concrete. For structural reasons a new

concrete C60 will be created.

• Steel only used in the reinforcement bars.

4. Materials

Page 12: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

• A 3-D grid with all the elevation and plan

dimensions inputed has to be created.

5. Model elaboration

Page 13: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

• It is convenient to create a

new set of columns every 5

stories to make it easy

when dimensioning them.

• In the first 4 floors the

columns that don’t have

floors on top will also be

different than the ones

with 35 floors on top

5. Model elaboration

Page 14: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

• When drawing shear walls

it’s possible to distinguish

into two kinds of shear

walls:

• The ones surrounding the

elevators and stairs.

• In the residential floors,

the ones dividing the

different apartments.

5. Model elaboration

Page 15: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

• There are two kinds of beams:

• Primary beams that go from column to column. The

moment release for this kind of beams will be continuous.

• Secundary beams that go from beam to beam. The

chosen distribution for this type of beams is a cross

distribution. The moment release for this kind of beams

will be pinned.

• No beams should be drawn inside the shear

walls.

5. Model elaboration

Page 16: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN
Page 17: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

• Two kinds of slabs: 1.Normal slabs ; 2.Inside shear

walls slabs

5. Model elaboration

Page 18: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN
Page 19: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

• Three requirements should be met by the model:• First rotation period / x or y period < 0,9

• Story drift < 1/800

• Maximum story drift / average story drift < 1,4

• To meet this three requirements a process of

analysis and later dimensioning of the structural

members will take place.

• It will be necessary to look at the different

modes of structure to determine which one is

the first to have rotation.

6. Model analysis

Page 20: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

6. Model analysis

1st mode 2nd mode 3rd mode

Page 21: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

6. Model analysis

Deformed shape 3-D View Longitudinal Reinforcing

Page 22: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

6. Model analysis

Page 23: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

First rotation period / x or y period < 0,9The first rotation period is the one of the third mode = 1,85398

The first period with x or y movement is the first mode = 2,50081

1,85398 / 2,50081 = 0,741352 < 0,9 Story drift < 1/800

The maximum story drift is for the 35th floor:

1/811 < 1/800 Maximum story drift / average story drift < 1,4

The maximum story drift is for the 1st floor= 1/811

Average story drift = 9,5992*10^(-4)

(1/811) / ( 9,5992*10^(-4)) = 1,285 < 1,4

7. Requirements

Page 24: Joan Tresserras Pujol-Xicoy TALL BUILDING DRAFT DESIGN

THANK YOU!

谢谢 !