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New district heating system based on natural gas-fired boilers with absorption heat exchangers

机译:基于带吸收式热交换器的天然气锅炉的新区域供热系统

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摘要

Current district heating systems based on natural gas-fired boilers have lower primary energy efficiency due to its higher-temperature exhaust flue gas, and it cannot meet high-density heat load demand by the existing primary heating network. A new district heating system based on natural gas-fired boilers with absorption heat exchangers is presented to increase its primary energy efficiency and meet high-density heat load demand. In this new district heating system, absorption heat exchangers installed in heating substations could greatly decrease return water temperature of the primary heating network. The lower temperature return water could be used to cool exhaust flue gas and increase heat transmission capacity of the existing primary heating network. This new district heating system was analyzed by thermodynamics and economics. Results show that its primary energy efficiency and heat transmission capacity of the primary heating network are increased by about 11% and 47% respectively. When the heat transmission distance of the primary heating network is over 2.6 km, the new district heating system has better thermodynamic performance, economic benefit and environmental benefit, therefore, it would be a better choice for district heating systems based on natural gas-fired boilers with longer heat transmission distance of the primary heating network. (C) 2017 Elsevier Ltd. All rights reserved.
机译:当前的基于天然气锅炉的区域供热系统由于其废气温度较高而具有较低的一次能源效率,并且不能满足现有的一次供热网络的高密度热负荷需求。提出了一种基于天然气锅炉和吸收式热交换器的新型区域供热系统,以提高其一次能源效率并满足高密度热负荷需求。在这个新的区域供热系统中,安装在供热变电站中的吸收式热交换器可以大大降低一次供热网络的回水温度。较低温度的回水可用于冷却废气,并提高现有主要供热网络的传热能力。通过热力学和经济学对这种新的区域供热系统进行了分析。结果表明,其一次能源效率和一次供热网络的传热能力分别提高了约11%和47%。当一次供热网络的传热距离超过2.6 km时,新的区域供热系统具有更好的热力学性能,经济效益和环境效益,因此,它将是基于天然气锅炉的区域供热系统的更好选择。主加热网络的传热距离更长。 (C)2017 Elsevier Ltd.保留所有权利。

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