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Some Problems of the Integration of Heat Pump Technology into a System of Combined Heat and Electricity Production

机译:热泵技术融入热电联产系统的若干问题

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The closure of a part of the municipal combined heat and power (CHP) plant of Ko?ice city would result in the loss of 200 MW thermal output within a realtively short period of time. The long term development plan for the Ko?ice district heating system concentrates on solving this problem. Taking into account the extremely high (90 %) dependence of Slovakia on imported energy sources and the desirability of reducing the emission of pollutantst the alternative of supplying of 100 MW thermal output from geothermal sources is attractive. However the indices of economic efficiency for this alternative are unsatisfactory. Cogeneration of electricity and heat in a CHP plant, the most efficient way of supplying heat to Ko?ice at the present time. If as planned, geothermal heat is fed directly into the district heating network the efficiency would be greatly reduced. An excellent solution of this problem would be a new conception, preferring the utilization of geothermal heat in support of a combined electricity and heat production process. The efficiency of geothermal energy utilization could be increased through a special heat pump. This paper deals with several aspects of the design of a heat pump to be integrated into the system of the CHP plant.
机译:科希策市市政热电联产厂的部分关闭将导致在短时间内损失200兆瓦的热能输出。科希策集中供热系统的长期发展计划集中在解决这个问题上。考虑到斯洛伐克对进口能源的极高依赖(90%)和减少污染物排放的可取性,选择从地热源提供100兆瓦热输出是有吸引力的。但是,该替代方案的经济效率指标并不令人满意。热电联产厂的热电联产,是目前向科菲策提供热量的最有效方法。如果按计划将地热直接供入区域供热网络,效率将大大降低。一个很好的解决方案是采用新概念,更喜欢利用地热来支持电热生产过程的联合。可以通过特殊的热泵来提高地热能的利用效率。本文涉及将要集成到CHP工厂系统中的热泵设计的几个方面。

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