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A comparative study of industrial heat supply based on second-law analysis and operating costs

机译:基于第二法分析和运营成本的工业供热比较研究

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In this paper, the thermodynamic and economic efficiency of three different heat supply processes are compared, based on exergy flows and costs of heat. A gas turbine process with a heat recovery boiler, a gas and steam turbine combined cycle process and a high temperature heat pump system recovering waste heat are analysed. The aim is to provide heat as 4 bar(abs) saturated steam. The economic analysis bases on the comparison of the consumption-related costs of heat, the capital-related costs of heat, and the operation-related costs of heat. The results show that the heat pump system has higher exergetic efficiency than the gas turbine or the gas turbine combined cycle process. For the consumption related costs, the economic calculation shows that the operation of a heat pump, working with a coefficient of performance of four and for a natural gas price of 25 €/MWh, is the cheapest way of heat production as long as the electricity price is lower than 45 €/MWh. For the period from January 2013 until June 2016 the total costs of heat, based on real gas and electricity prices from the European Energy Exchange, are calculated and analysed. The results show that the share of heat provided by the heat pump system varies between 45% and 76%. Especially in 2013 and 2014, the economic conditions for operating heat pumps were very good. Since October 2015 the natural gas prices have seen a decrease which favours industrial heat supply with combined heat and power systems.
机译:本文根据火用流量和热成本比较了三种不同供热过程的热力学和经济效率。分析了带有热回收锅炉的燃气轮机工艺,燃气与蒸汽轮机联合循环工艺以及回收废热的高温热泵系统。目的是提供作为4 bar(abs)饱和蒸汽的热量。经济分析基于对与消耗相关的热成本,与资本相关的热成本以及与运行相关的热成本的比较。结果表明,热泵系统的热效率高于燃气轮机或燃气轮机联合循环过程。对于与消耗有关的成本,经济计算表明,以功率系数4运转并且天然气价格为25€/ MWh的热泵运行是最便宜的供热方式,只要电力价格低于45欧元/兆瓦时。从2013年1月至2016年6月,根据欧洲能源交易所的实际天然气和电力价格,计算并分析了总的热成本。结果表明,热泵系统提供的热量份额在45%至76%之间变化。特别是在2013年和2014年,热泵运行的经济状况非常好。自2015年10月以来,天然气价格一直在下跌,这有利于将热电联产系统用于工业供热。

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