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Design and Operation Regulation of Combined Heating System with Gas-fired Boilers as Peak-load Heat Sources in Secondary Heating Network

机译:二次供热网络中以燃气锅炉为峰值负荷热源的联合供暖系统的设计与运行规程

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Combined heating systems are regarded as the development trend of central heating in the near future. In China, combined heating systems using gas-fired boilers for peak-load compensation are starting to appear in some cities those are rich in natural gas resources. But there still exist some controversies in design and operation regulation of them. This paper developed a new method for designing the combined heating system. We firstly detailed a combined heating system with gas-fired boilers as peak-load heat source in Daqing city and demonstrated its connecting mode. Subsequently, we discussed the application of heat load duration curve in this heating system and developed a method to calculate basic heat load ratio when basic heat source provided the maximum full load heat supply. Then, we elaborated four design parameters, including critical peak heating temperature, duration running time of peak-load heat sources, design supply water temperatures of heat exchanger and peak-load heat sources. Finally, we analyzed the operation regulation of this kind of combined heating systems. In can be concluded that the critical peak heating temperature and duration running time of peak-load heat sources are only determined by basic heat load ratio. It is also suggested that two basic heat sources with different design heat load be applied in primary heating network, and thus to reasonably fulfill the economic requirements of a combined heating system.
机译:组合式供暖系统被视为近期集中供暖的发展趋势。在中国,一些天然气资源丰富的城市开始出现使用燃气锅炉进行峰值负荷补偿的联合供暖系统。但是在它们的设计和操作规范上仍然存在一些争议。本文开发了一种设计组合式供暖系统的新方法。我们首先详细介绍了大庆市以燃气锅炉为峰值负荷热源的联合供暖系统,并演示了其连接方式。随后,我们讨论了热负荷持续时间曲线在该加热系统中的应用,并提出了一种在基本热源提供最大满负荷供热时计算基本热负荷比的方法。然后,我们详细阐述了四个设计参数,包括临界峰值加热温度,峰值负载热源的持续运行时间,热交换器的设计供水温度和峰值负载热源。最后,我们分析了这种组合式供暖系统的运行规律。可以得出结论,峰值负荷热源的临界峰值加热温度和持续运行时间仅由基本热负荷比确定。还建议在一次供热网络中使用两种具有不同设计热负荷的基本热源,从而合理地满足组合供热系统的经济要求。

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