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Thermo-economic optimization of secondary distribution network of low temperature district heating network under local conditions of South Korea

机译:韩国当地条件下低温区域供热管网二次配电网的热经济性优化

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摘要

A secondary distribution network of a low temperature district heating system is designed and optimized for a residential apartment complex under the local conditions of South Korea in the TRNSYS simulation environment. The residential apartment complex is a typical example of Korean residential apartment. The Apartment complex has 15 floors, 4 apartments on each floor and each apartment has heating surface area of 85 m. The supply temperature of the hot water is reduced from 65 °C to 45 °C and the temperature difference between supply and return line is varied from 18 °C to 27 °C. The corresponding heat lossfrom secondary network, pumping power and area of domestic hot water heat exchanger unit for each supply temperature and temperature difference for required heating load of the apartment complex are calculated. Results indicate that when supply temperature is decreased from 65 °C to 45 °C, area of heat exchanger is increased by 68.2%, pumping power is also increased by 9.8% and heat loss is reduced by 15.6%. These results correspond to a temperature difference of 20 °C, the standard temperature difference in South Korea residential heating system. Economic assessment of the secondary distribution network shows that the supply temperature of 55 °C and 60 °C are economically more feasible than 65 °C and 45 °C.
机译:在TRNSYS模拟环境中,针对韩国本地条件下的住宅公寓大楼,设计并优化了低温区域供热系统的二次配电网络。住宅综合大楼是韩国住宅公寓的典型示例。公寓大楼有15层,每层有4套公寓,每套公寓的供暖面积为85 m。热水的供应温度从65°C降低到45°C,进水和回水管线之间的温差从18°C到27°C不等。针对公寓大楼所需供暖负荷的每个供应温度和温差,计算了来自二次网络的相应热量损失,家用热水热交换器单元的抽水功率和面积。结果表明,当供应温度从65°C降至45°C时,热交换器的面积增加了68.2%,泵送功率也增加了9.8%,热量损失减少了15.6%。这些结果对应于20°C的温度差,这是韩国住宅供暖系统的标准温度差。二次配电网的经济评估表明,与65°C和45°C相比,55°C和60°C的供应温度在经济上更可行。

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