An Experimental Study on Uplift Capacity of Short Piles with Shear Keys Studies on the windproof charactemstics of a greenhouse (IV)

Vinyl covering greenhouses are very lightweight structures and is often pulled out due to the wind. Therefore, improvement in the windproof capability of greenhouses is an important problem. Particularly, uplift capacity of the pile foundations is one of most important subjects regarding the windpro...

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Published inTransactions of The Japanese Society of Irrigation, Drainage and Reclamation Engineering Vol. 1990; no. 147; pp. 61 - 67,a2
Main Authors SHINO, Kazuo, NAKAZAKI, Akito
Format Journal Article
LanguageJapanese
Published The Japanese Society of Irrigation, Drainage and Rural Engineering 25.06.1990
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ISSN0387-2335
1884-7234
DOI10.11408/jsidre1965.1990.147_61

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Abstract Vinyl covering greenhouses are very lightweight structures and is often pulled out due to the wind. Therefore, improvement in the windproof capability of greenhouses is an important problem. Particularly, uplift capacity of the pile foundations is one of most important subjects regarding the windproofing of greenhouses. Normally, footing foundations are not used due to economic and construction considerations with cylindrical concrete piles generally being used. Therefore, two types of cylindrical concrete model piles with shear keys on the surfaces have been proposed for the purpose of increasing ultimate uplift capacity. The shape of a shear key is semi-spherical and its diameter is 15 mm. Pile diameter is 7.5cm and L/D are 2.6-5.3. Pull-out tests were carried out using sand have two densities loose and dense. Uplift capacities of piles with shear key are compared with uplift capacity of piles with no keys. Results obtained are as follows: The rate of increase in ultimate uplift capacity become larger due to the increase in the pile length of the embeddment. In the case of loose sand, an increase in ultimate uplift capacity is slightly smaller for both piles, but in the case of dense sand, an increase of about 30-50% in ultimate uplift capacity in the case of a pile with a key. The pile movement at the time in which the pile is pulled out occurs in proportion to the pile length of embeddment in both piles.
AbstractList Vinyl covering greenhouses are very lightweight structures and is often pulled out due to the wind. Therefore, improvement in the windproof capability of greenhouses is an important problem. Particularly, uplift capacity of the pile foundations is one of most important subjects regarding the windproofing of greenhouses. Normally, footing foundations are not used due to economic and construction considerations with cylindrical concrete piles generally being used. Therefore, two types of cylindrical concrete model piles with shear keys on the surfaces have been proposed for the purpose of increasing ultimate uplift capacity. The shape of a shear key is semi-spherical and its diameter is 15 mm. Pile diameter is 7.5cm and L/D are 2.6-5.3. Pull-out tests were carried out using sand have two densities loose and dense. Uplift capacities of piles with shear key are compared with uplift capacity of piles with no keys. Results obtained are as follows: The rate of increase in ultimate uplift capacity become larger due to the increase in the pile length of the embeddment. In the case of loose sand, an increase in ultimate uplift capacity is slightly smaller for both piles, but in the case of dense sand, an increase of about 30-50% in ultimate uplift capacity in the case of a pile with a key. The pile movement at the time in which the pile is pulled out occurs in proportion to the pile length of embeddment in both piles.
Author NAKAZAKI, Akito
SHINO, Kazuo
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References 14) Chattopadhyay, B. C. and P. J. Pise: Uplift Capacity of Piles in Sand, ASCE 112, No.GE 9, pp.888-904 (1986
3) Sowa, V. A.: Pulling Capacity of Concrete Cast in situ Bored Piles, Can. Geotech. J. 7, pp.482-493 (1970
8) Levacher, D. R. and J. Sieffert: Tests on Model Tension Piles, ASCE 110, No.GE 12, pp.1735-4748 (1984
1) 江刺・片岡・安田: 杭の引抜き抵抗, 電力中央研究所技術研究所報告66037, pp.1-59 (1966
6) Awad, A. and A. Ayoub: Ultimate Uplift Capacity of Vertical and Inclined Piles in Cohesionless Soil, Proc. 5 th Conf. on SMFE, pp.221-227 (1976
9) 山肩・角・清水・筒井: 砂地盤中の模型拡底杭の引抜き耐力に関する研究, 17回土質工学研究発表会講演集, pp.2109-2112 (1982
15) 篠和夫・中崎昭人: 竜巻による施設園芸ハウスの被害について, 農土誌56 (2), pp.11-15 (1988
16) 勝見・藤村: アース・アンカーの引抜き抵抗に関する模型実験的研究, 鳥取大工研報8, pp.177-185 (1977
5) Meyerhof, G. G.: The Uplift Capacity of Foundations Under Oblique Loads, Can. Geotech. J. 10, pp.64-40 (1973
7) Das, B. M., G. R. Seeley and T. W. Pfeifle: Pullout Resistance of Rough Rigid Piles in Granular Soil, Soils and Foundations 17 (3), pp.72-77 (1977
12) Rao, K. S. and K. H. Venkatesh: Uplift Behaviour of Short Piles in Uniform Sand, Soils and Foundations 25 (4), pp.1-7 (1985
10) Das, B. M.: A Procedure for Estimation of Uplift Capacity of Rough Piles, Soils and Foundations, 23 (3), pp.122-126 (1983
11) Hegedas, E. and V. K. Khosla: Pullout Resistanca of “H” Piles, ASCE 110, No.GE 9, pp.1274-1290 (1984
4) Vesic, A. S.: Tests on Instrumented Piles, Ogeechee River Site, ASCE 96, No.MF 2, pp.561-584 (1970
13) 日本建築学会編: 建築基礎構造設計基準・同解説, 日本建築学会, p.282 (1974
2) Meyerhof, G. G. and J. I. Adams: The Ultimate Uplift Capacity of Foundations, Can. Geotech. J. 5, pp.225-244 (1968
18) Potyondy, J. G.: Skin Friction between Soils and Construction Materials, Geotechnique 11 (4), pp.339-353 (1961
17) Meyerhof, G. G.: Penetration Tests and Bearing Capacity of Cohesionless Soils, ASCE 82, No.SM 1, pp.1-19 (1956
References_xml – reference: 8) Levacher, D. R. and J. Sieffert: Tests on Model Tension Piles, ASCE 110, No.GE 12, pp.1735-4748 (1984)
– reference: 4) Vesic, A. S.: Tests on Instrumented Piles, Ogeechee River Site, ASCE 96, No.MF 2, pp.561-584 (1970)
– reference: 11) Hegedas, E. and V. K. Khosla: Pullout Resistanca of “H” Piles, ASCE 110, No.GE 9, pp.1274-1290 (1984)
– reference: 3) Sowa, V. A.: Pulling Capacity of Concrete Cast in situ Bored Piles, Can. Geotech. J. 7, pp.482-493 (1970)
– reference: 18) Potyondy, J. G.: Skin Friction between Soils and Construction Materials, Geotechnique 11 (4), pp.339-353 (1961)
– reference: 7) Das, B. M., G. R. Seeley and T. W. Pfeifle: Pullout Resistance of Rough Rigid Piles in Granular Soil, Soils and Foundations 17 (3), pp.72-77 (1977)
– reference: 12) Rao, K. S. and K. H. Venkatesh: Uplift Behaviour of Short Piles in Uniform Sand, Soils and Foundations 25 (4), pp.1-7 (1985)
– reference: 10) Das, B. M.: A Procedure for Estimation of Uplift Capacity of Rough Piles, Soils and Foundations, 23 (3), pp.122-126 (1983)
– reference: 14) Chattopadhyay, B. C. and P. J. Pise: Uplift Capacity of Piles in Sand, ASCE 112, No.GE 9, pp.888-904 (1986)
– reference: 9) 山肩・角・清水・筒井: 砂地盤中の模型拡底杭の引抜き耐力に関する研究, 17回土質工学研究発表会講演集, pp.2109-2112 (1982)
– reference: 5) Meyerhof, G. G.: The Uplift Capacity of Foundations Under Oblique Loads, Can. Geotech. J. 10, pp.64-40 (1973)
– reference: 16) 勝見・藤村: アース・アンカーの引抜き抵抗に関する模型実験的研究, 鳥取大工研報8, pp.177-185 (1977)
– reference: 1) 江刺・片岡・安田: 杭の引抜き抵抗, 電力中央研究所技術研究所報告66037, pp.1-59 (1966)
– reference: 6) Awad, A. and A. Ayoub: Ultimate Uplift Capacity of Vertical and Inclined Piles in Cohesionless Soil, Proc. 5 th Conf. on SMFE, pp.221-227 (1976)
– reference: 2) Meyerhof, G. G. and J. I. Adams: The Ultimate Uplift Capacity of Foundations, Can. Geotech. J. 5, pp.225-244 (1968)
– reference: 13) 日本建築学会編: 建築基礎構造設計基準・同解説, 日本建築学会, p.282 (1974)
– reference: 17) Meyerhof, G. G.: Penetration Tests and Bearing Capacity of Cohesionless Soils, ASCE 82, No.SM 1, pp.1-19 (1956)
– reference: 15) 篠和夫・中崎昭人: 竜巻による施設園芸ハウスの被害について, 農土誌56 (2), pp.11-15 (1988)
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Snippet Vinyl covering greenhouses are very lightweight structures and is often pulled out due to the wind. Therefore, improvement in the windproof capability of...
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StartPage 61
SubjectTerms Shear key
Subtitle Studies on the windproof charactemstics of a greenhouse (IV)
Title An Experimental Study on Uplift Capacity of Short Piles with Shear Keys
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