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Municipal solid waste landfills as geothermal heat sources

机译:市政固体垃圾填埋场作为地热热源

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It is well established that ground-source heat pumps (GSHPs) require less external energy input than conventional heating and cooling systems for buildings because they exchange heat with the subsurface soil and rock, which has a steady temperature compared to that of the outside air. To address barriers to implementation for GSHPs, incorporation of heat exchangers into civil engineering infrastructure is being investigated to reduce installation costs. Of these infrastructures, municipal solid waste (MSW) landfills may be a potential source of heat for GSHPs due to their elevated temperatures associated with the long-term, exothermic decomposition of organic materials within the waste. To assess this potential, this paper provides a review of studies focused on characterization of the thermal resource of landfilled MSW. Further, the potential impacts of heat exchange on rates of methane generation, hydraulic performance of landfill liners, and clogging of leachate collection systems are evaluated. Based on landfill construction requirements and different approaches for GSHP installation used in practice, configurations for geothermal heat exchangers in landfills are proposed for different landfill operational and closure scenarios. An economic analysis of geothermal heat exchange in MSW landfills indicates that they are expected to provide an accessible and sustainable thermal energy resource.
机译:公认的是,地源热泵(GSHP)与建筑物的传统加热和冷却系统相比,所需的外部能量输入更少,因为它们与地下土壤和岩石进行热交换,而地下土壤和岩石与外界空气相比具有稳定的温度。为了解决实施GSHP的障碍,正在研究将热交换器纳入土木工程基础设施中以降低安装成本。在这些基础设施中,城市固体废物(MSW)垃圾填埋场可能是GSHP的潜在热源,因为它们的高温与废物中有机材料的长期放热分解有关。为了评估这种潜力,本文对以垃圾掩埋垃圾的热资源表征为重点的研究进行了综述。此外,评估了热交换对甲烷生成速率,垃圾填埋场衬板的水力性能以及渗滤液收集系统堵塞的潜在影响。根据垃圾填埋场的建设要求和实践中采用的不同的GSHP安装方法,针对不同的垃圾填埋场操作和封闭场景,提出了垃圾填埋场中地热热交换器的配置。对城市生活垃圾掩埋场中地热交换的经济分析表明,它们有望提供可及且可持续的热能资源。

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