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Determination of Loading Capacities for Bi-directional Pile Load Tests Based on Actual Load Test Results

机译:根据实际载荷测试结果确定双向桩载荷测试的载荷能力

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A bi-directional pile load test (PLT) is regarded as the most reliable method for verifying the design capacity of a large-diameter drilled shaft. The loading capacity is often improperly set while conducting this test, leading to inadequate verification of appropriate design capacities for large-diameter drilled shafts. This problem necessitates a new, rational method for estimating the loading capacity for bi-directional PLTs. In this study, results of numerous bi-directional PLTs conducted by different researchers were analyzed for their failure patterns, load increasing ratios, loading capacity increasing ratios, and sufficiency ratios of the design load. The results indicate that most failure patterns involved a lack of loading capacity. In our assessment, the load increasing and loading capacity increasing ratios were less than 2, confirming that the maximum equivalent test load is not always twice the total bi-directional load. Hence, it is difficult to verify the design capacity using the current planned loading capacity. An analysis of the sufficiency ratios of the design load revealed that 18.6 % of the test results did not satisfy the requirement. To eliminate the uncertainties in verifying the design load, the one-directional loading capacity should be at least 2.5 times the design load.
机译:双向桩载荷测试(PLT)被认为是验证大直径钻杆设计能力的最可靠方法。进行此测试时,负载能力通常设置不当,导致对大直径钻杆的适当设计能力的验证不足。这个问题需要一种新的,合理的方法来估计双向PLT的负载能力。在这项研究中,分析了不同研究人员进行的大量双向PLT的故障模式,负载增加率,负载能力增加率和设计负载的充足率。结果表明,大多数故障模式都涉及缺乏负载能力。在我们的评估中,载荷增加率和载荷增加率之比小于2,这证明最大等效试验载荷并不总是双向总载荷的两倍。因此,难以使用当前计划的装载能力来验证设计能力。对设计载荷的充足率进行分析后发现,有18.6%的测试结果不能满足要求。为了消除验证设计载荷的不确定性,单向载荷能力应至少为设计载荷的2.5倍。

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