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Large prefabricated pile foundation, a solution for high-rise buildings in Ha Noi and HoChiMinh city Bao Viet NGUYEN National University of Civil Engineering, Hanoi, Vietnam [email protected]
24

2014 Workshop Presentation Mong coc

Dec 27, 2015

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Page 1: 2014 Workshop Presentation Mong coc

Large prefabricated pile foundation,a solution for high-rise buildings in

Ha Noi and HoChiMinh city

Bao Viet NGUYENNational University of Civil Engineering, Hanoi, [email protected]

Page 2: 2014 Workshop Presentation Mong coc

A LOT OF BUILDINGS ARE RISING IN HANOI & HOCHIMINH CITY

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BORED PILE FOUNDATION

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Bored piles- Very high bearing

capacity- A lot of mud &

construction trash with a swampy site

- Cost Increased because of environmental treatments

- Construction time might be extended

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Prefabricated piles with large size- High bearing

capacity up to 8000kN

- No construction trash with clean site

- Properly reduce cost and construction time

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APPLICABILITY OF PREFABRICATED

PILES FOUNDATION

Where: Rfea = feasibility ratioQaua = Allowable bearing capacity

of pile foundation on area unit p = total pressure acting on foundation

Rfea = Qaua / p / FSfea

1.0 : high applicability

< 1.0 : low applicapility

Page 7: 2014 Workshop Presentation Mong coc

APPLICABILITY OF PREFABRICATED

PILES FOUNDATION

Where: Pa = Allowable bearing capacity of a pile

d = pile size

Qaua = Pa / (3dx3d)

p = 15kPa x number of storeys

Page 8: 2014 Workshop Presentation Mong coc

Distribution

maps of

soil types

in area of

old Ha Noi

Page 9: 2014 Workshop Presentation Mong coc

Sub-soil type Name Description Distribution

ASingle layer

A1 Clayed soils, up to 30m thick, PI=0.15~0.4, SPT=12~15, E0=10Mpa

West Từ Liêm;Đông Anh

A2 Clayed soils, up to 30m thick, PI=0.35~0.6, SPT=8~12, E0=5~8Mpa Hà Nội center

BTwo

layers

B1

Upper layer: Clayed soils, up to 10m thick, PI=0.15~0.4, SPT=12~15, E0>10Mpa;Lower layer: Medium sand, medium dense, up to 20m thick, SPT30,E0>20Mpa.

North Đông Anh

B2

Upper layer: Clayed soils, 5~10m thick, PI=0.35~0.6, SPT=9Lower layer: small sand, medium dense, up to 20m thick, SPT12, E0>10Mpa;

South Đông Anh and

Thanh Trì; Gia Lâm

CMulti layers with

weak soil

C1

Upper layer: Clayed soils, up to 10m thick, PI=0.15~0.4, SPT=12~15, E0=10Mpa;Middle layer: Organic soils, up to 10m thick, PI>0.8, SPT=5, E0=3~5Mpa;Lower layer: Medium sand, up to 10m thick, SPT30, E020Mpa;

North Đông Anh

C2-3

Upper layer: Clayed soils, up to 10m thick, PI=0.35~0.6, SPT=5~8, E0=6~8Mpa;Middle layer: Organic soils, up to 15m thick, PI>1.2, SPT=2~4, E0=3Mpa;Lower layer: Sandy soil, up to 10m thick, SPT20, E015Mpa;

Đông Anh, Gia Lâm (small

area) Thanh Trì,

South Từ Liêm

Main soil strata types in the area of Ha Noi

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Feasibility ratio of prefabricated square piles for 15 storeys buildings – Hanoi Area

Pile size (cm)

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Feasibility ratio of prefabricated square piles for 20 storeys buildings – Hanoi Area

Pile size (cm)

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Feasibility ratio of prefabricated square piles for 25 storeys buildings – Hanoi Area

Pile size (cm)

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Feasibility ratio of prefabricated square piles for 30 storeys buildings – Hanoi Area

Pile size (cm)

Page 14: 2014 Workshop Presentation Mong coc

Distribution

maps of

soil types

in area of

HoChiMinh

city

Page 15: 2014 Workshop Presentation Mong coc

Sub-soil Description Distribution

A1

Upper layer: Clayed soils (CuChi, ThuDuc), up to 10m thick, PI=-0.25~0.25, E013Mpa;Middle layer: Clayed soild (Trang Bom), >10m thick, PI=-0.23~0.4; E08Mpa.Lower layer: Medium sand, medium dense, large thickness, E0>20Mpa.

Northern of ThuDuc & CuChi

and a part at central of the city

A2Upper layer: Clayed soils (BInhChanh), up to 10m thick, PI=-0.25~0.25, E013Mpa;Middle and Lower layer are the same as A1

North-western of CuChi and most of

the central

B1

Upper layer: Organic layer (CuChi, ThuDuc), up to 10m thick, PI=1.0~2.5, E01Mpa;Middle layer: Clayed soild (Trang Bom), >10m thick, PI=-0.23~0.4; E08Mpa.Lower layer: Medium sand, medium dense, large thickness, E0>20Mpa.

NhaBe, BinhChanh district,

southern of ThuDuc, South-

Western of CuChi, along SaiGon river and coastal area.B2

Upper layer: Organic layer (CuChi, ThuDuc), up to 20m thick, PI=1.0~2.5, E01Mpa;Middle and Lower layer are the same as B1

B3Upper layer: Organic layer (CuChi, ThuDuc), up to 30m thick, PI=1.0~2.5, E01Mpa;Middle and Lower layer are the same as B1

Main soil strata types in HoChiMinh city

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Feasibility ratio of prefabricated circle piles for 15 storeys buildings – HoChiMinh city

Pile size (cm)

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Feasibility ratio of prefabricated circle piles for 20 storeys buildings – HoChiMinh city

Pile size (cm)

Page 18: 2014 Workshop Presentation Mong coc

Feasibility ratio of prefabricated circle piles for 25 storeys buildings – HoChiMinh city

Pile size (cm)

Page 19: 2014 Workshop Presentation Mong coc

Feasibility ratio of prefabricated circle piles for 30 storeys buildings – HoChiMinh city

Pile size (cm)

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Case history of 20 storeys twin buildings

45x45cm of piles with bearing capacity of 1800kN

Settlement of about 2cm with 70% design load

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CONCLUSIONS - HANOI

- Large prefabricated pile foundation could be applied to the high-rise buildings up to 30 storeys.

- In Ha Noi, soil types of A1 and B1 are most suitable for prefabricated pile foundation of buildings up to 30 storeys.

- In case of B2, C1 soil types, the applicability of the piles for buildings up to 25 storeys is highly reliable.

- Buildings of 15 storeys and buildings of 20 storeys could be settled on C2-3 and A2 soil types, respectively, with large size of pile (45x45cm and 50x50cm).

Page 22: 2014 Workshop Presentation Mong coc

CONCLUSIONS – HOCHIMINH CITY

- In HoChiMinh city, soil types of A1 and A2 are most suitable for prefabricated pile foundation of buildings up to 30 storeys but a careful consideration must be carried out for 30 storeys buildings.

- In case of B1 soil types, the piles foundation could be applied for buildings up to 20 storeys with high reliability.

- Buildings of 15 storeys could be settled on B2 and B3 soil types.

Page 23: 2014 Workshop Presentation Mong coc

CONCLUSIONS

- To apply the large prefabricated pile, the construction site must be large enough so that a big driven/jacked rig could have a space to work.

- Using large prefabricated pile could save money because of almost no environmental treatment and using prestressed concrete.

- Last but not least, the construction site was pretty clean therefore the construction works of foundation could be carried out smoothly and the construction time may be reduced.

Page 24: 2014 Workshop Presentation Mong coc

THANK YOU FOR

YOUR ATTENTION