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等温双相流建模以评估气体收集对垃圾填埋场岩土和水力性能的影响。

Isothermal Dual-Phase Flow Modeling to Assess the Impact of Gas Collection on Geotechnical and Hydraulic Performance of Landfills.

作者信息

Jain Pradeep, Kanneganti Abhimanyu, Townsend Timothy, Krause Max, Tolaymat Thabet

机构信息

Innovative Waste Consulting Services, LLC, 3720 NW 43rd St., Suite 103, Gainesville, FL 32606.

Dept. of Environmental Engineering Sciences, Univ. of Florida, P.O. Box 116450, Gainesville, FL 32611-6450.

出版信息

J Geotech Geoenviron Eng. 2023 Aug 1;149. doi: 10.1061/jggefk.gteng-11260.

Abstract

Liquid addition to landfilled municipal solid waste (MSW) is a practice employed to accelerate the biodegradation of the organic fraction of MSW and ensuing gas generation. Pore landfill gas (LFG) and leachate pressure from the added moisture and enhanced gas generation are expected to impact the geotechnical stability of landfill slopes. The impact of moisture addition and gas collection on the stability of landfills was numerically modeled using transient isothermal dual-phase flow and slope stability modeling. The temporal variation in the factor of safety (FS) for slope stability analysis was estimated for the simultaneous flow of LFG and leachate with and without gas collection and leachate recirculation for varying LFG generation rates and waste moisture contents. A significant decline in the FS for landfill slope stability was observed when recirculating leachate without active gas collection. Even without pressurized leachate recirculation, a significant decline in the FS value was observed for landfills with relatively high in situ moisture content without active gas collection. In some modeled scenarios without LFG collection, the FS value was lower than 1. The analysis suggests that the landfill side slope stability analysis should incorporate LFG generation and the resultant pressure for landfills containing high-moisture-content waste and for the landfill with pressurized leachate recirculation. The analysis suggests that an efficient gas collection system plays a critical role in the geotechnical stability of the slope of wet landfills and the performance of leachate recirculation trenches.

摘要

向填埋的城市固体废弃物(MSW)中添加液体是一种用于加速MSW有机成分生物降解及随后气体产生的做法。添加的水分产生的孔隙填埋气(LFG)和渗滤液压力以及增强的气体产生预计会影响填埋场边坡的岩土稳定性。使用瞬态等温双相流和边坡稳定性模型对添加水分和气体收集对填埋场稳定性的影响进行了数值模拟。针对不同的LFG产生速率和废物含水量,在有和没有气体收集及渗滤液再循环的情况下,对LFG和渗滤液同时流动时边坡稳定性分析的安全系数(FS)的时间变化进行了估计。在没有主动气体收集的情况下进行渗滤液再循环时,观察到填埋场边坡稳定性的FS显著下降。即使没有加压渗滤液再循环,对于原位含水量较高且没有主动气体收集的填埋场,也观察到FS值显著下降。在一些没有LFG收集的模拟情景中,FS值低于1。分析表明,对于含有高含水量废物的填埋场以及有加压渗滤液再循环的填埋场,填埋场边坡稳定性分析应考虑LFG产生及由此产生的压力。分析表明,高效的气体收集系统在湿地填埋场边坡的岩土稳定性和渗滤液再循环沟渠的性能中起着关键作用。

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1
Effect of gas pressure on municipal solid waste landfill slope stability.气压对城市固体废物填埋边坡稳定性的影响。
Waste Manag Res. 2022 Mar;40(3):323-330. doi: 10.1177/0734242X211001414. Epub 2021 Mar 24.

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