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Comparison of energy and exergy analysis of fossil plant, ground and air source heat pump building heating system

机译:化石厂,地面和空气源热泵建筑供暖系统的能量和火用分析的比较

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The energy and exergy flow for a space heating systems of a typical residential building of natural ventilation system with different heat generation plants have been modeled and compared. The aim of this comparison is to demonstrate which system leads to an efficient conversion and supply of energy/ exergy within a building system.rnThe analysis of a fossil plant heating system has been done with a typical building simulation software IDA-ICE. A zone model of a building with natural ventilation is considered and heat is being supplied by condensing boiler. The same zone model is applied for other cases of building heating systems where power generation plants are considered as ground and air source heat pumps at different operating conditions. Since there is no inbuilt simulation model for heat pumps in IDA-ICE, different COP curves of the earlier studies of heat pumps are taken into account for the evaluation of the heat pump input and output energy.rnThe outcome of the energy and exergy flow analysis revealed that the ground source heat pump heating system is better than air source heat pump or conventional heating system. The realistic and efficient system in this study "ground source heat pump with condenser inlet temperature 30 ℃ and varying evaporator inlet temperature" has roughly 25% less demand of absolute primary energy and exergy whereas about 50% high overall primary coefficient of performance and overall primary exergy efficiency than base case (conventional system). The consequence of low absolute energy and exergy demands and high efficiencies lead to a sustainable building heating system.
机译:已对具有不同热电厂的自然通风系统典型住宅建筑的空间供暖系统的能量和火用流进行了建模和比较。进行此比较的目的是演示哪种系统可导致建筑系统内的有效转换和能量/火用的供应。使用典型的建筑模拟软件IDA-ICE对化石设备的供暖系统进行了分析。考虑具有自然通风的建筑物的区域模型,并且通过冷凝锅炉供热。同一区域模型适用于建筑物供热系统的其他情况,在这些情况下,发电厂被视为在不同运行条件下的地面和空气源热泵。由于IDA-ICE中没有内置的热泵模拟模型,因此在评估热泵输入和输出能量时会考虑早期热泵研究的不同COP曲线.rn能量和火用流量分析的结果揭示地源热泵加热系统优于空气源热泵或常规加热系统。在这项研究中,“冷凝器入口温度为30℃,蒸发器入口温度变化的地源热泵”,一个切实有效的系统具有大约25%的绝对一次能量和火用绝对能量需求降低,而大约50%的总体主要性能系数和总体一次热能需求高火用效率高于基本情况(常规系统)。低绝对能量和火用需求以及高效率的结果导致了可持续的建筑采暖系统。

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