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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Thermodynamic efficiency of low-carbon domestic heating systems: heat pumps and micro-cogeneration
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Thermodynamic efficiency of low-carbon domestic heating systems: heat pumps and micro-cogeneration

机译:低碳家用供暖系统的热力学效率:热泵和微型热电联产

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摘要

Energy and exergy analysis is employed to compare the relative thermodynamic performance of low-carbon domestic energy systems based on air source heat pumps and micro-combined heat and power (cogeneration) units. A wide range of current units are modelled under different operating conditions representative of the United Kingdom to determine the energy and exergy flows from primary energy inputs through to low-carbon heating system and then to end use. The resulting performances are then analysed in order to provide insights regarding the relative merits of the systems under the different operating constraints that may be experienced both now and into the future. Although current mid-range systems achieve comparable performance to a condensing gas boiler, the state-of-art offers considerable improvements. Micro-combined heat and power units and air source heat pumps have the technical potential to improve the energy performance of dwellings. The relative performance and potential of the systems is dominated by the electrical characteristics: the grid electrical generation efficiency, the power-to-heat demand ratio and the availability of electrical export. For total power-to-heat demands below 1∶1.5, air source heat pumps have greater improvement potential as their energy efficiency is not constrained. At higher power-to-heat ratios, micro-combined heat and power units offer the potential for higher overall efficiency and this generally occurs irrespective of whether or not the thermal energy from them is used effectively.
机译:能源和火用分析用于比较基于空气源热泵和微热电联产(热电联产)单元的低碳家庭能源系统的相对热力学性能。在代表英国的不同运行条件下对各种当前单位进行建模,以确定从一次能源输入到低碳加热系统再到最终使用的能量和火用流。然后分析所得的性能,以提供有关系统在当前和未来可能遇到的不同操作约束下的相对优点的见解。尽管当前的中档系统在性能上可与冷凝式燃气锅炉相媲美,但最新技术可以提供相当大的改进。微型热电联产和空气源热泵具有改善住宅能源性能的技术潜力。系统的相对性能和潜力由以下电气特性决定:电网发电效率,电热需求比和电力输出的可用性。对于总的热电需求低于1∶1.5的空气源热泵,由于其能量效率不受限制,因此具有更大的改进潜力。在较高的功率/热比下,微结合的热量和功率单元可提供更高的整体效率,并且无论是否有效利用它们的热能,这种情况通常都会发生。

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