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A Framework Interpreting Bender Element Tests, Combining Time-domain And Frequency-domain Methods

机译:解释Bender元素测试的框架,结合了时域和频域方法

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Bender element (BE) testing is a powerful and increasingly common laboratory technique for determining the shear S-wave velocity of geomaterials. There are several advantages of BE testing, but there is no standard developed for the testing procedures or for the interpretation of the results. This leads to high degree of uncertainty and subjectivity in the interpretation. In this paper, the authors review the most common methods for the interpretation of BE tests, discuss some important technical requirements to minimize errors, and propose a practical framework for BE testing, based on the comparison of different interpretation techniques in order to obtain the most reliable value for the travel time. This new procedure consists of the application of a methodical, systematic, and objective approach for the interpretation of the results, in the time and frequency domains. The use of an automated tool enables unbiased information to be obtained regarding variations in the results to assist in the decision of the travel time. Two natural soils were tested: residual soil from Porto granite, and Toyoura sand. Specimens were subjected to the same isotropic stress conditions and the results obtained provided insights on the effects of soil type and confining stress on the interpretation of BE results; namely, the differences in testing dry versus saturated soils, and in testing uniform versus well-graded soils.
机译:弯曲元素(BE)测试是一种功能强大且日益普遍的实验室技术,用于确定土工材料的剪切S波速度。 BE测试有很多优点,但是没有针对测试程序或结果解释制定标准。这导致解释中的高度不确定性和主观性。在本文中,作者回顾了解释BE测试最常用的方法,讨论了一些重要的技术要求以最大程度地减少误差,并在比较不同解释技术的基础上提出了BE测试的实用框架,以便获得最大的解释。可靠的旅行时间价值。此新程序包括在时域和频域中应用系统,客观的方法来解释结果。使用自动化工具可以获取有关结果变化的无偏信息,以帮助确定行驶时间。测试了两种天然土壤:波尔图花岗岩的残留土壤和丰谷砂。试样在相同的各向同性应力条件下受力,获得的结果为了解土壤类型和局限应力对BE结果的解释提供了见识;也就是说,测试干燥土壤和饱和土壤以及测试均匀土壤和良好土壤的差异。

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