qs –shaft capacity in sandscontents.kocw.net/kocw/document/2015/hanyang/parkdoohee/13.pdf · ©...
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![Page 1: Qs –Shaft capacity in Sandscontents.kocw.net/KOCW/document/2015/hanyang/parkdoohee/13.pdf · © Park 기초공학 lecture_05_pile_foundation Qs –Shaft capacity in Sands 구조물설계기준](https://reader033.vdocuments.site/reader033/viewer/2022041714/5e4a2d15d872b35e85270733/html5/thumbnails/1.jpg)
© Park 기초공학 lecture_05_pile_foundation
Qs – Shaft capacity in Sands
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© Park 기초공학 lecture_05_pile_foundation
Qs – Shaft capacity in Sands
( )( ) Q zf zp z
sQ p Lf
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© Park 기초공학 lecture_05_pile_foundation
Qs – Shaft capacity in Sands
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© Park 기초공학 lecture_05_pile_foundation
Qs – Shaft capacity in Sands
'
0 '' tan
'
vo
z L
z to Lf K
z L to Lf f
Pile type K
Bored or Jetted K0=1-sin’
Low displacement driven K0=1-sin’ to K0=1.4(1-sin’)
High displacement driven K0=1-sin’ to K0=1.8(1-sin’)
DasL’ 15D
구조물 설계기준L’ 20D
= 0.5’ - 0.8’Additional equations: 11.40 – 11.43
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© Park 기초공학 lecture_05_pile_foundation
Qs – Shaft capacity in Sands구조물 설계기준(Aas, 1966)
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© Park 기초공학 lecture_05_pile_foundation
Qs – Shaft capacity in SandsCorrelation with SPT
1 60
2 21 60
1 60
0.291
(1976)
0.02 ( )
0.2 ( / ) 10 /
0.01 ( )
(1985)0.224 ( ) ( )
av a
av a
a
MeyerhofHigh displacement
f p N kPa
N tf m tf m
Low displacement
f p N kPa
Briaudf p N kPa
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구조물 기초설계기준식 5.2.14
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© Park 기초공학 lecture_05_pile_foundation
Qs – Shaft capacity in SandsCorrelation with CPT
' cf f
Electric cone
Mechanical cone
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© Park 기초공학 lecture_05_pile_foundation
Qs – Shaft capacity in Clays 1. method
uf s
s uQ fp L s p L 8
- 육상말뚝에는 Woodward 곡선 사용
- 긴 강관말뚝에서는 API(1982) 곡선 사용
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© Park 기초공학 lecture_05_pile_foundation
Qs – Shaft capacity in Clays 2. methodVijayvergiya and Focht (1972)
' 2av vo uf s
1 1 1'oA A A
L
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© Park 기초공학 lecture_05_pile_foundation
Qs –in Sands and Clays: method
tan '' /
1 sin ' ( )
1 sin ' ( )
R
R
R
R
Kdrained friction angle of remolded clay sand
K earth pessure coefficient
K NC
K OCR OC
0'vf
토질
점토 0.20 – 0.25실트 0.25 – 0.35모래 0.35 – 0.50
값의범위
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© Park 기초공학 lecture_05_pile_foundation
Qs – Shaft capacity in Clays: CPT
' cf f
Correlation with CPT
21500tf/mp cq q
2f f 10tf/ms c
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© Park 기초공학 lecture_05_pile_foundation
Determination of Ap and As
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© Park 기초공학 lecture_05_pile_foundation
Determination of Ap and As – Circular Piles
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© Park 기초공학 lecture_05_pile_foundation
Determination of Ap and As – H Piles
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If L > 5B
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© Park 기초공학 lecture_05_pile_foundation
Allowable capacity of pile
uall
QQFS
,p L sall
p s
Q QQFS FS
FS = 2.5 ~ 4 적용
도로교표준시방서(1996)평상시: 3.0지진시: 2.0
재하시험의경우평상시: 2.5지진시: 1.7
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© Park 기초공학 lecture_05_pile_foundation
Point bearing capacity of piles on rock
2
1
tan 45 '/ 2p uq q N
N
( )( ) 5
u labu design
16
443
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© Park 기초공학 lecture_05_pile_foundation
Axial Capacity of Single Piles - SummaryQu in Clay
QpQp = 9su (Meyerhof)
Qs3 methods (, , method)CPT
Qu in Sand
QpMeyerhofNAVFACCPT
Qs Use and (also depends on method of installation)SPT or CPT
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