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EAGER: Use of Results from the Undrain Triaxial Tests to Model Elasto-plastic Behavior for Unsaturated soils: A Feasibility Study

EAGER: Use of Results from the Undrain Triaxial Tests to Model Elasto-plastic Behavior for Unsaturated soils: A Feasibility Study
EAGER:利用不排水三轴试验的结果来模拟非饱和土的弹塑性行为:可行性研究
批准号:
1054532
负责人:
Xiong Zhang
金额:
$4.9万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-09-01 至 2012-12-31

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中文摘要
翻译
这一早期概念探索性研究补助金(EIGER)奖为探索使用不排水测试来表征非饱和土壤以进行本构建模的可行性提供了资金。这项探索性研究将主要评估应力局部化和随后的内部排水对UTT试验中土样吸力分布的影响,并开发有效的方法来消除这种影响。研究的目标将通过收集和分析现有文献中的数据、设备开发、实验测试和本构模型来实现。这项探索性研究是PI致力于发展简单和可靠的方法来表征和模拟非饱和土的完全耦合弹塑性行为的初步研究。如果成功,它将以更可靠的测量、更具代表性的土壤行为以及对非饱和土壤本构行为的更好理解,将表征非饱和土壤行为所需的测试时间减少三个数量级。试验结果为解决非饱和土力学领域中一些基本问题的争论提供了坚实的实验依据。这项研究将为快速、实用、更全面和可靠的土壤行为表征开辟新的、令人兴奋的大门。它有可能改变岩土工程以外的耦合问题的材料测试和表征方法。
英文摘要
This EArly-Concept Grants for Exploratory Research (EAGER) award provides funding for exploring the feasibility of using undrained tests to characterize unsaturated soils for the purpose of constitutive modeling. This exploratory research will mainly evaluate the influences of stress localizations and subsequent internal drainage on suction distributions of soil specimens during UTT tests and develop effective methods to eliminate such effects. The objectives of the research will be achieved through collecting and analyzing data from existing literature, equipment development, experimental testing, and constitutive modeling. This exploratory research is a preliminary study of PI's effort on developing simple and reliable methods to characterize and model fully-coupled elasto-plastic behavior for unsaturated soils. If successful, it will reduce the testing time required to characterize behavior for unsaturated soils by three orders of magnitude with more reliable measurement, more representative soil behavior, and better understanding of constitutive behavior of unsaturated soil. The test results provide solid experimental basis for resolving arguments regarding some fundamental questions in the field of unsaturated soil mechanics. This proposed research will open up new and exciting doors for fast, practical and more comprehensive and reliable soil behavior characterization. It has the potential to transform the ways of material testing and characterization for coupled problems beyond geotechnical engineering.
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