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Application of dynamic programming to evaluate the slope stability of a vertical extension to a balefill

机译:动态程序设计在评估填埋场垂直延伸段的边坡稳定性中的应用

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The slope-stability of a proposed vertical extension of a balefill was investigated in the present study, in an attempt to determine a geotechnically conservative design, compliant with New Jersey Department of Environmental Protection regulations, to maximize the utilization of unclaimed disposal capacity. Conventional geotechnical analytical methods are generally limited to well-defined failure modes, which may not occur in landfills or balefills due to the presence of preferential slip surfaces. In addition, these models assume an a priori stress distribution to solve essentially indeterminate problems. In this work, a different approach has been applied, which avoids several of the drawbacks of conventional methods. Specifically, the analysis was performed in a two-stage process: (a) calculation of stress distribution, and (b) application of an optimization technique to identify the most probable failure surface. The stress analysis was performed using a finite element formulation and the location of the failure surface was located by dynamic programming optimization method. A sensitivity analysis was performed to evaluate the effect of the various waste strength parameters of the underlying mathematical model on the results, namely the factor of safety of the landfill. Although this study focuses on the stability investigation of an expanded balefill, the methodology presented can easily be applied to general geotechnical investigations.
机译:在本研究中,对拟议的装填矿的垂直延伸的边坡稳定性进行了研究,以试图确定符合新泽西州环境保护部法规的岩土工程保守设计,以最大程度地利用无人认领的处置能力。常规的岩土分析方法通常仅限于定义明确的破坏模式,由于存在优先滑移面,在填埋场或装填场中可能不会发生这种破坏模式。此外,这些模型假设先验应力分布以解决本质上不确定的问题。在这项工作中,已采用了一种不同的方法,该方法避免了常规方法的一些缺点。具体来说,分析过程分两个阶段进行:(a)应力分布的计算,以及(b)应用优化技术来确定最可能出现故障的表面。使用有限元公式进行应力分析,并通过动态编程优化方法确定破坏表面的位置。进行了敏感性分析,以评估基础数学模型的各种废物强度参数对结果的影响,即垃圾填埋场的安全系数。尽管本研究的重点是对扩展的填充物进行稳定性研究,但所介绍的方法可以轻松地应用于一般岩土工程研究。

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