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重力再循环蒸发器流路优化与性能研究 被引量:9
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作者 臧润清 赵东 +3 位作者 刘亚哲 刘建勋 张柱 姬卫川 《制冷学报》 CAS CSCD 北大核心 2015年第1期101-106,共6页
重力供液再循环蒸发器受到工作原理的限制,其流路结构不能借鉴直接膨胀供液系统蒸发器的流路结构。本文首先阐明了重力再循环制冷系统蒸发器流路的优化原则,设计了两种蒸发器流路结构,其中第一种为重力供液系统常用的流路结构,第二种为... 重力供液再循环蒸发器受到工作原理的限制,其流路结构不能借鉴直接膨胀供液系统蒸发器的流路结构。本文首先阐明了重力再循环制冷系统蒸发器流路的优化原则,设计了两种蒸发器流路结构,其中第一种为重力供液系统常用的流路结构,第二种为经过优化的流路结构,在此基础上搭建了重力再循环蒸发器实验台,通过实验对优化前后的蒸发器进行性能对比与分析。研究表明,在保温体温度一定的情况下,经过优化的蒸发器因其每个支路接触空气的平均温度相同,从而能保证并联四个支路制冷剂侧有相同的循环倍率和相同的平均传热温差,经过优化的蒸发器具有更好的性质,尤其在-25℃和-20℃工况下,第二种(改进型)蒸发器比第一种(传统型)蒸发器有更高的单位面积传热量,制冷量分别增大60.3%和44.1%,性能系数分别提高16%和13.8%。 展开更多
关键词 重力供液 蒸发器流路 蒸发器性能 再循环蒸发器
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论平行流蒸发器分流板位置变化对性能的影响
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作者 易志清 《汽车零部件》 2011年第8期84-86,共3页
针对平行流蒸发器中分流板位置、孔径大小对平行流蒸发器性能影响进行分析,并得出结论,合理的分流板位置及大小对蒸发器性能及表面温度分布均匀状态有相当大的改善。
关键词 汽车空调 平行流蒸发器 蒸发器分流板 蒸发器性能实验
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刮板薄膜蒸发器的布置与配管设计 被引量:2
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作者 孙磊 《广东化工》 CAS 2018年第6期199-200,共2页
文章介绍了刮板薄膜蒸发器的性能特点,着重阐述了刮板薄膜蒸发器的设备布置、配管设计,并且总结了一些刮板薄膜蒸发器在装置设计过程中管道设计人员需要注意的事项,如提交结构条件、管口方位及其他配管设计要点。
关键词 刮薄膜蒸发器:性能特点:设备布置 配管设计
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Experimental study on the performance of a rotational supercavitating evaporator for desalination 被引量:7
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作者 LIKHACHEV Dmitriy S LI FengChen KULAGIN Vladimir A 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第11期2115-2130,共16页
Efforts have been made on experimental research of a supercavitation device for desalination, which is named rotational supercavitating evaporator (RSCE). The RSCE is characterised by the simple construction and res... Efforts have been made on experimental research of a supercavitation device for desalination, which is named rotational supercavitating evaporator (RSCE). The RSCE is characterised by the simple construction and responsive capacity control, and only requires rough filtration of the source water for scaling- and fouling-free operations. The present study has been conducted for the water flow at temperature of around 22-30℃ and atmospheric pressure as the first step for investigation of the performance characteristics of RSCE. The multiply factor extremal experiments conducted with the Box-Wilson's method have revealed the salinity of the condensate, the temperature of steam inside the supercavity, and dependence of the shape of supercavity on the rate of steam extraction and rotation speed of impeller. The shape of impeller and the expected supercavitating effects it generates have been confirmed by experimental results at the rotation speed of 5430 rpm (round per minute). The design of the steam extraction openings has been approved during the evacuation of steam. The experimental dependencies have been obtained in form of statistically valid regression equations, which can be used for engineering design of RSCE. 展开更多
关键词 DESALINATION cavitation technology thermal method steam extraction regression analysis
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Characteristic of Local Boiling Heat Transfer of Ammonia and Ammonia/Water Binary Mixture on the Plate Type Evaporator 被引量:2
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作者 Akio OKAMOTO Hirofumi ARIMA Yasuyuki IKEGAMI 《Journal of Thermal Science》 SCIE EI CAS CSCD 2011年第4期332-342,共11页
Power generation using small temperature difference such as ocean thermal energy conversion(OTEC)and discharged thermal energy conversion(DTEC)is expected to be the countermeasures against global warming problem.As am... Power generation using small temperature difference such as ocean thermal energy conversion(OTEC)and discharged thermal energy conversion(DTEC)is expected to be the countermeasures against global warming problem.As ammonia and ammonia/water are used in evaporators for OTEC and DTEC as working fluids,the research of their local boiling heat transfer is important for improvement of the power generation efficiency.Measurements of local boiling heat transfer coefficients were performed for ammonia/water mixture(z=0.9-1)on a vertical flat plate heat exchanger in a range of mass flux(7.5-15 kg/m2s),heat flux(15-23 kW/m 2),and pressure(0.7-0.9 MPa).The result shows that in the case of ammonia/water mixture,the local heat transfer coefficients increase with an increase of mass flux and composition of ammonia,and decrease with an increase of heat flux. 展开更多
关键词 Local Heat Transfer Ammonia/Water Mixture Plate Type Evaporator OTEC
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