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作 者:李文卓 刘慧卿[1] 杨伟[1] 张亦桐 余瑞玲 赵玉洁 LI Wenzhuo;LIU Huiqing;YANG Wei;ZHANG Yitong;YU Ruiling;ZHAO Yujie(North China University of Water Resources and Electric Power,Zhengzhou 450046,Henan,China)
出 处:《能源与节能》2022年第11期88-91,212,共5页Energy and Energy Conservation
摘 要:介绍了污水源热泵的原理和技术优势,针对处理后的污水的水质特点,通过设置合理的污水利用的前处理装置,增加二次循环水路、反冲洗过滤器,选用特殊材质的换热器等措施解决堵塞、腐蚀和结垢的相关问题。通过工程案例实测和国家民用建筑能效测评机构的能效评估得出结论:系统能效比为3.61,机组能效比为5.44,民建建筑节能率达65%,公建建筑节能率达50%,与其他空调系统相比SO年排放减少量11.9t,CO年排放减少量1469.35t,粉尘年排放减少量5.95t,年节约费用1.2323×10^(6)元。This paper introduced the principle and technological superiority of sewage source heat pumps. According to the water quality characteristics of treated sewage, the problems related to blockage, corrosion and scaling were solved by setting reasonable pre-treatment device for sewage utilization, adding secondary circulation water circuit and backwashing filter, and selecting heat exchanger of special material. Through the actual measurement of project case and energy efficiency evaluation of national civil building energy efficiency evaluation agency, it was concluded that the system energy efficiency ratio was 3.61, the unit energy efficiency ratio was 5.44, the energy efficiency of civil buildings was 65%, the energy efficiency of public buildings was 50%;SOemissions reduction was 11.9 t, COemission reduction was 1 469.35 t, and annual dust emission reduction was 5.95 t compared with other air conditioning systems;annual cost savings was 1.232 3×10^(6) yuan.
分 类 号:X703[环境科学与工程—环境工程]
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