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Prototype heat exchange and monitoring system at a municipal solid waste landfill in China

机译:中国城市生活垃圾填埋场的原型热交换和监测系统

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摘要

A prototype heat exchange and monitoring system was installed and operated in a newly filled municipal solid waste (MSW) landfill, located in Wuxi City, China. In this study, a test was conducted using the system to investigate the influence of heat exchange on waste temperature over three heat exchange stages. During the period of sharp increase of waste temperature, the first stage test was performed, whereas during the period of gradual increase of waste temperature, the second and third stages were performed. The results showed that (1) the waste temperature increased during the first two months after the commencement of temperature observations. This increase in temperature partially counteracted the effect of the heat exchange system on waste temperature during the first stage test. (2) During the subsequent 360 days, the waste temperature increased gradually. The influence of the heat exchange system was relatively more effective during the second and third stages than during the first stage. (3) During the test, the waste temperatures showed similar changes throughout the saturated portion of the waste, which was below the leachate level. (4) At ten days after the third heat exchange stage, the waste temperature increased gradually to the previous elevated temperature. The results of the test demonstrate that waste temperatures are mainly affected by thermal conduction in the waste mass and thermal convection in the leachate. Moreover, preliminary suggestions are provided for the installation of heat exchange pipes in landfills. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在中国无锡市新装填的城市固体垃圾填埋场中安装并运行了一个原型热交换和监测系统。在这项研究中,使用该系统进行了一项测试,以研究在三个热交换阶段中热交换对废物温度的影响。在废物温度急剧升高的时期,进行了第一阶段的测试,而在废物温度逐渐升高的时期,进行了第二和第三阶段。结果表明:(1)在开始温度观测后的前两个月中,废物温度升高。温度的这种升高部​​分抵消了第一阶段测试期间热交换系统对废料温度的影响。 (2)在随后的360天内,废物温度逐渐升高。在第二阶段和第三阶段中,热交换系统的影响要比第一阶段中的更为有效。 (3)在测试过程中,废物温度在废物的饱和部分(渗滤液水平以下)显示出相似的变化。 (4)在第三个热交换阶段后的十天,废料温度逐渐升高到以前的高温。测试结果表明,废料温度主要受废料中热传导和渗滤液中热对流的影响。此外,为在垃圾填埋场安装热交换管道提供了初步建议。 (C)2018 Elsevier Ltd.保留所有权利。

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