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Performance improvement in stepped solar still modified by sponge layer
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作者 Mahtab TARAHOMI Saman RASHIDI +1 位作者 Faramarz HORMOZI Shahabeddin ASHTIANI 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期1973-1982,共10页
In this paper,the experimental investigation on the performance improvement of conventional stepped solar still is conducted.The steps are covered by the porous material to improve the performance of the conventional ... In this paper,the experimental investigation on the performance improvement of conventional stepped solar still is conducted.The steps are covered by the porous material to improve the performance of the conventional device and increase the evaporation rate.All the parameters,including the temperature on the glass surface,the water temperature inside the evaporation zone,and the amount of water produced in both conventional and modified stepped solar stills are measured and compared.The efficiency of two devices and their exergy efficiency have been calculated.Finally,the economic analysis of both devices has been done to check the economic feasibility of the modified device.The amount of freshwater generated during one day was 2244.4 and 3076.2 mL/m^(2),respectively for the conventional and modified stepped solar stills.As a result,the amount of water produced in one day by modified stepped solar still is 35.5% more than the conventional one.Also,the costs for the conventional and modified stepped solar stills have been calculated as 0.0359 and 0.029$/(L·m^(-2)),respectively. 展开更多
关键词 stepped solar still black sponge EFFICIENCY EXERGY economic analysis
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环保型多元混合工质在小型低温装置上的应用 被引量:2
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作者 屈岩 王芳 +4 位作者 孟照峰 赵亚乐 李堂 王瑜 张振亚 《流体机械》 CSCD 北大核心 2015年第6期82-86,共5页
采用低GWP和零ODP的环保型多元混合工质(R50,R1150,R290,R600a,N2),对回热式单级压缩节流制冷循环进行系统设计与优化。在带预冷的回热式单级压缩节流制冷循环中,利用NIST-REFPROP8.0物性分析软件,对混合工质热力性质进行模拟计算。通... 采用低GWP和零ODP的环保型多元混合工质(R50,R1150,R290,R600a,N2),对回热式单级压缩节流制冷循环进行系统设计与优化。在带预冷的回热式单级压缩节流制冷循环中,利用NIST-REFPROP8.0物性分析软件,对混合工质热力性质进行模拟计算。通过热力学分析和2种优选配比下系统的主要性能参数(压缩机吸排气温度、压力,低温桶内温度)对比试验测试,得到了组分最佳配比N2∶CH4∶C2H4∶C3H8∶i C4H10=32∶20∶12∶20∶16,系统运行75min左右可达到最低制冷温度170K左右,实现带预冷的环保型多元混合工质在小型低温装置系统的稳定运行。 展开更多
关键词 环保型多元混合工质 回热式单级节流制冷循环 最佳配比 (火用)效率分析 性能优化
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