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Performance analysis of using mine water from an abandoned coal mine for heating of buildings using an open loop based single shaft GSHP system

机译:基于开环单轴GSHP系统的废弃煤矿井水用于建筑物采暖的性能分析

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摘要

The application of ground source heat pumps (GSHP) for heating and cooling of buildings is currently increasing in popularity in the UK and globally. Traditional GSHP systems use the naturally available geothermal gradient of earth for heating and cooling purposes using open loop or closed loop systems. In this paper, the use of mine water from a flooded coal mine for heating of buildings is presented using a GSHP system with an open loop configuration. The novelty of this approach is that a single shaft is used to extract the warm water and inject the cooler water back into the same shaft, thereby minimising the area needed, initial capital costs in constructing a doublet system and also potentially overcome the time consuming process to address related environmental agencies regulation regarding the discharging of the mine water. The relatively stable temperature low enthalpy of mine water contained in the abandoned and flooded coal mines are ideal to be used for both heating and cooling of buildings when used in conjunction with heat pumps. The GSHP is considered to be an effective means of reducing the carbon emission as it gives more output in the form of thermal energy in comparison to the electrical energy it consumes as input. This research work reports on the performance of the system over the winter season and its long term potential in converting the mine water from an environmental liability to a sustainable energy resource and offers a means to regenerate the former coal mining areas.
机译:地源热泵(GSHP)在建筑物的加热和冷却中的应用目前在英国和全球范围内日益普及。传统的GSHP系统使用开环或闭环系统将自然可用的地球地热梯度用于加热和冷却目的。在本文中,提出了使用具有开环配置的GSHP系统将淹水煤矿的矿井水用于建筑物供暖。这种方法的新颖性在于,使用单个竖井提取热水并将较冷的水注入同一竖井中,从而最大程度地减少了所需面积,构造双联系统的初始投资成本,并且还潜在地克服了耗时的过程解决有关环境保护机构有关矿井水排放的法规。与热泵结合使用时,废弃煤矿和淹水煤矿中所含矿泉水的温度相对较低的稳定焓值非常适合用于建筑物的加热和冷却。 GSHP被认为是减少碳排放的有效手段,因为与输入能源相比,GSHP以热能的形式提供了更多的输出。这项研究工作报告了该系统在冬季的性能及其将矿井水从环境责任转变为可持续能源的长期潜力,并提供了使以前的煤矿开采区再生的手段。

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