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Energy saving potential of low temperature hot water system based on air source absorption heat pump

机译:基于空气源吸收式热泵的低温热水系统的节能潜力

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摘要

Boilers are widely used to generate low temperature hot water for heating and domestic hot water. In order to improve the efficiency and decrease the emission of pollution in the process of producing low temperature hot water, a heating system based on air source absorption heat pump (ASAHP) is proposed. A simplified model of the proposed system is built based on the heat and mass balance. The model is verified by comparing the predicted results with those from a previous reference. The performances of ASAHP using H_2O/LiBr and NH_3/LiNO_3 as working fluids are simulated at different air temperatures. Based on the simulated performance, energy saving potential of the proposed system applied in four typical Chinese cities is analyzed. The results show that the proposed system can provide energy saving rates of 18%, 28.5%, 37% and 42% in Shenyang, Beijing, Shanghai and Guangzhou respectively, showing great potentials in future applications of low temperature hot water.
机译:锅炉被广泛用于产生用于加热的低温热水和生活热水。为了提高低温热水生产过程中的效率并减少污染排放,提出了一种基于空气源吸收式热泵的加热系统。基于热量和质量平衡建立了所提出系统的简化模型。通过将预测结果与先前参考的结果进行比较来验证模型。使用H_2O / LiBr和NH_3 / LiNO_3作为工作流体,在不同的空气温度下模拟ASAHP的性能。基于模拟性能,分析了该建议系统在中国四个典型城市中的节能潜力。结果表明,该系统在沉阳,北京,上海和广州分别可实现18%,28.5%,37%和42%的节能率,在低温热水的未来应用中显示出巨大的潜力。

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