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A Perspective Evaluation Methodology for Economic Feasibility of Low Temperature Sustainable Energy Source in Heating Mode Technology

机译:加热方式技术中低温可持续能源经济可行性的前景评价方法

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The economical and clean environment issues for a sustainable energy source at low temperature (LT) were considered and compared to natural gas technology as a fossil fuel source. The friendly environment refrigerants R410A, R407C, R717, R134a, and R600a were analyzed in an approximately 500 kW heating load output cascade heat pump. The heat pump was investigated at an intermediate temperature of 35 °C, high temperature (HT) cycle condenser at 70 °C, and compressors isentropic efficiency of 70%. All analyzed refrigerant pairs exhibited high heating season performance factor (HSPF), and it was ranged between 7 and 8.5. The thermal performance comparison revealed that the HSPF for R717/R600a showed the highest values among other refrigerant pairs. The results showed that at LT cycle evaporator temperature range of −10 to −2 °C, the natural gas technology revealed a higher season heating cost values than that of the heat pump plant by up to 10%. On the contrary at lower LT evaporator temperature, the heat pump plant technology exhibited a higher season heating cost lied in the range of 4–13.6% than that of the natural gas system. At compressors isentropic efficiency of 90%, the seasonal heating cost of the heat pump plant was lower than that of the natural gas technology by the range of 9–25% at test conditions. The mean seasonal CO 2 amount released by the natural gas firing technology from all tested refrigerant pairs ranged between 2.1 and 2.5 times that of the heat pump plant technology for the investigated LT evaporator temperature range.
机译:考虑了低温(LT)可持续能源的经济和清洁环境问题,并将其与天然气技术作为化石燃料来源进行了比较。在约500 kW的热负荷输出级联热泵中分析了环境友好型制冷剂R410A,R407C,R717,R134a和R600a。研究了热泵的中间温度为35°C,高温(HT)循环冷凝器为70°C,压缩机的等熵效率为70%。所有分析的制冷剂对均表现出较高的加热季节性能因子(HSPF),范围在7至8.5之间。热性能比较显示,R717 / R600a的HSPF在其他制冷剂对中显示出最高值。结果表明,在LT循环蒸发器温度范围为-10至-2°C的情况下,天然气技术显示的季节供暖成本值比热泵厂高出10%。相反,在低温LT蒸发器温度较低的情况下,热泵厂技术显示出较高的季节供暖成本,比天然气系统高出4-13.6%。在压缩机的等熵效率为90%的情况下,在测试条件下,热泵设备的季节性供热成本比天然气技术的季节性供热成本低9-25%。在研究的低温蒸发器温度范围内,天然气燃烧技术从所有测试的制冷剂对释放的平均季节性CO 2 量是热泵厂技术的2.1到2.5倍。

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