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Analysis of an Evaporator-condenser-separated Mechanical Vapor Compression System 被引量:8

Analysis of an Evaporator-condenser-separated Mechanical Vapor Compression System
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摘要 An evaporator-condenser-separated mechanical vapor compression (MVC) system was presented. The better effect of descaling and antiscaling was obtained by the new system. This study focused on the method of thermodynamic analysis, and the energy and exergy flow diagrams were established by using the first and second law of thermodynamics analysis. The results show that the energy utilization rate is very high and the specific power consumption is low. Exergy analysis indicates that the exergy efficiency is low, and the largest exergy loss occurs within the evaporator-condenser and the compressor. An evaporator-condenser-separated mechanical vapor compression (MVC) system was presented. The better ef- fect of descaling and antiscaling was obtained by the new system. This study focused on the method of thermo- dynamic analysis, and the energy and exergy flow diagrams were established by using the first and second law of thermodynamics analysis. The results show that the energy utilization rate is very high and the specific power consumption is low. Exergy analysis indicates that the exergy efficiency is low, and the largest exergy loss occurs within the evaporator -condenser and the compressor.
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2013年第2期152-158,共7页 热科学学报(英文版)
关键词 压缩系统 分离机械 蒸汽压缩 冷凝器 蒸发器 能源利用率 除垢防垢 第二定律 Mechanical vapor compression Sewage treatment Thermodynamic Exergy
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