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Control and estimation of maximum gas pressure below landfill cover with horizontal gas wells: Analytical study

机译:水平气体井垃圾填埋场最大气体压力控制和估计:分析研究

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摘要

Horizontal spacing of horizontal extraction gas wells can be designed to achieve a 90% pumping rate of the total generated landfill gas (LFG) from given waste properties (viz: gas permeability, landfill gas generation and non-homogeneity with depth), cover characteristics and vacuum pressure. However, cover characteristics and vacuum pressure are also important design parameters and different combinations of them result in different distributions of gas pressure in the waste, some of which would induce problematic air intrusion while others might pose threat to cover stability. This paper uses the maximum gas pressure directly below cover to distinguish these combinations, and provides the first study of the effects of the above parameters on potential outcomes. The ability of the overlying cover to resist LFG emission from the landfilled waste is suggested not to exceed a critical value, otherwise the maximum gas pressure below it would become at least 1 kPa larger than atmospheric pressure. A design formula for this critical value is proposed with respect to typical values of waste properties, vacuum pressure and the buried depth of horizontal wells in wide ranges. Together with consideration of recovery efficiency, the proposed method can be used to design a horizontal extraction gas collection system and a cover system in better working condition, and to evaluate the maximum gas pressure below cover. These applications are illustrated by a worked example.
机译:水平提取气井的水平间距可以设计成从给定的废物特性(VIZ:煤气渗透率,垃圾填埋气体产生和无均匀性,深度),覆盖特性和覆盖特性和覆盖特性和造成液态填埋气体(LFG)的90%泵送速率。真空压力。然而,覆盖特性和真空压力也是重要的设计参数,并且它们的不同组合导致废物中的气体压力分布不同,其中一些将引起问题的空气侵扰,而其他人可能会造成威胁才能造成威胁威胁。本文使用直接覆盖下方的最大气体压力来区分这些组合,并提供了对上述参数对潜在结果的影响的第一研究。覆盖覆盖以抵抗填埋废物的LFG排放的能力不得超过临界值,否则下面的最大气体压力将变为至少1kPa大于大气压。关于这种临界值的设计公式是关于废物特性,真空压力和宽水平孔的掩埋深度的典型值。考虑到恢复效率,该方法可用于在更好的工作条件下设计水平提取气体收集系统和覆盖系统,并评估低于盖子的最大气体压力。这些应用程序由一个工作的例子说明。

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