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Exploitation of low-temperature energy sources from cogeneration gas engines

机译:利用热电联产燃气发动机开发低温能源

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摘要

This paper describes an original and innovative technical solution for exploiting low-temperature energy sources from cogeneration gas reciprocating engines installed within district heating systems. This solution is suitable for those systems in which the heat is generated by the use of reciprocating engines powered by gaseous fuel for combined heat and power production. This new technical solution utilizes low-temperature energy sources from a reciprocating gas engine which is used for a combined production of heat and power. During the operation of the cogeneration system low-temperature heat is released, which can be raised to as much as 85 degrees C with the use of a high-temperature heat-pump, thus enabling a high-temperature regime for heating commercial buildings, district heating or in industrial processes. In order to demonstrate the efficiency of utilizing low-temperature heat sources in the cogeneration system, an economic calculation is included which proves the effectiveness and rationality of integrating high-temperature heat-pumps into new or existing systems for combined heat and power production with reciprocating gas engines. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种新颖的创新技术解决方案,用于利用区域供热系统中安装的热电联产燃气往复式发动机的低温能源。该解决方案适用于那些通过使用由气态燃料驱动的往复式发动机产生热量以产生热量和动力的组合系统。这种新的技术解决方案利用了往复式燃气发动机的低温能源,该发动机用于热电联产。在热电联产系统运行期间,释放出低温热量,利用高温热泵可将其升高至85摄氏度,从而可以为区域内的商业建筑供热加热或工业过程中。为了证明在热电联产系统中利用低温热源的效率,其中进行了经济计算,证明了将高温热泵集成到新的或现有的系统中以进行热电联产和往复运动的有效性和合理性。汽油机。 (C)2015 Elsevier Ltd.保留所有权利。

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