Department of Civil Engineering, Indian Institute of Science, Bangalore 560 012, India.
Waste Manag. 2013 Oct;33(10):2029-34. doi: 10.1016/j.wasman.2013.05.018. Epub 2013 Jul 16.
In the analysis and design of municipal solid waste (MSW) landfills, there are many uncertainties associated with the properties of MSW during and after MSW placement. Several studies are performed involving different laboratory and field tests to understand the complex behavior and properties of MSW, and based on these studies, different models are proposed for the analysis of time dependent settlement response of MSW. For the analysis of MSW settlement, it is very important to account for the variability of model parameters that reflect different processes such as primary compression under loading, mechanical creep and biodegradation. In this paper, regression equations based on response surface method (RSM) are used to represent the complex behavior of MSW using a newly developed constitutive model. An approach to assess landfill capacities and develop landfill closure plans based on prediction of landfill settlements is proposed. The variability associated with model parameters relating to primary compression, mechanical creep and biodegradation are used to examine their influence on MSW settlement using reliability analysis framework and influence of various parameters on the settlement of MSW are estimated through sensitivity analysis.
在城市固体废物(MSW)填埋场的分析和设计中,存在许多与 MSW 在 MSW 放置期间和之后的特性相关的不确定性。进行了几项研究,涉及不同的实验室和现场测试,以了解 MSW 的复杂行为和特性,并基于这些研究,提出了不同的模型来分析 MSW 的时变沉降响应。为了分析 MSW 的沉降,考虑反映不同过程(例如加载下的初始压缩、机械蠕变和生物降解)的模型参数的可变性非常重要。在本文中,使用基于响应面法(RSM)的回归方程来使用新开发的本构模型来表示 MSW 的复杂行为。提出了一种基于预测垃圾填埋沉降的方法来评估垃圾填埋场容量并制定垃圾填埋场关闭计划。使用可靠性分析框架来检查与初始压缩、机械蠕变和生物降解相关的模型参数的可变性,以评估它们对 MSW 沉降的影响,并通过敏感性分析估计各种参数对 MSW 沉降的影响。