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Sustainability evaluation and sensitivity analysis of district heating systems coupled to geothermal and solar resources

机译:地区供暖系统的可持续性评价与敏感性分析,加上地热和太阳能资源

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摘要

District heating systems assisted by renewable energy harness local energy sources, save fossil fuels, and reduce greenhouse gas emissions. Here, geothermal and solar resources are integrated into district heating through a geothermal heat pump and an absorption heat pump by employing vapor-compressor and absorption cycles, respectively. A quantitative sustainability assessment model was constructed for the resulting hybrid district heating systems. Indicators on energy, environment, economic, and societal aspects were used to evaluate the composite sustainability index of hybrid systems with information entropy method. The results demonstrate that a district heating system coupled to compound parabolic concentrator-photovoltaic/thermal solar collector system with 100% photovoltaic coverage ratio is the ideal system for the case study when the annual cost saving ratio is given the highest impact in the composite sustainability index. A detailed analysis on the annual cost saving ratio shows that a higher ambient temperature, solar beam irradiance and grid electricity price would have a positive impact on the annual cost saving ratio. It can be concluded that the quantitative sustainability evaluation approach proposed helps to select the ideal hybrid system.
机译:区域供暖系统由可再生能源线束局部能源,节省化石燃料,减少温室气体排放。这里,通过采用蒸汽 - 压缩机和吸收循环,地热和太阳能资源通过地热热泵和吸收热泵整合到区域加热。为所得的混合区供热系统构建了定量可持续性评估模型。能源,环境,经济和社会方面的指标用于评估杂交系统的复合可持续性指标与信息熵方法。结果表明,耦合到复合抛物线浓缩器 - 光伏/热太阳能集热器系统的地区加热系统,具有100%光伏覆盖率,是案例研究的理想系统,何时为年度成本节约率赋予复合可持续性指数的最高影响。对年度成本节约率的详细分析表明,环境温度较高,太阳能射线辐照度和电网电价将对年度成本节约率产生积极影响。可以得出结论,所提出的定量可持续性评估方法有助于选择理想的混合系统。

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