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Resistance Factors for Ultimate Limit State Design of Large-Diameter Bored Piles
In the LRFD methodology for ultimate limit state design, resistance factors can be applied to both resistances and loads. Resistance factors at a target reliability level can be derived based on statistical data on resistances and load effects using reliability theory. In this paper, resistance factors for limit state design of large-diameter bored piles are developed using a design point method, based on the statistics of prediction model performance obtained from Hong Kong load test cases. A design method for large-diameter bored piles in soils and a design method for large-diameter bored piles socketed in rocks are considered. The resistance factors for the shaft and toe resistance components are calculated separately.
Resistance Factors for Ultimate Limit State Design of Large-Diameter Bored Piles
In the LRFD methodology for ultimate limit state design, resistance factors can be applied to both resistances and loads. Resistance factors at a target reliability level can be derived based on statistical data on resistances and load effects using reliability theory. In this paper, resistance factors for limit state design of large-diameter bored piles are developed using a design point method, based on the statistics of prediction model performance obtained from Hong Kong load test cases. A design method for large-diameter bored piles in soils and a design method for large-diameter bored piles socketed in rocks are considered. The resistance factors for the shaft and toe resistance components are calculated separately.
Resistance Factors for Ultimate Limit State Design of Large-Diameter Bored Piles
Chu, Florence L. F. (Autor:in) / Zhang, Limin (Autor:in)
International Foundation Congress and Equipment Expo 2009 ; 2009 ; Orlando, Florida, United States
10.03.2009
Aufsatz (Konferenz)
Elektronische Ressource
Englisch
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