会议论文详细信息
7th International Conference on Cooling & Heating Technologies
Applications of Jet Ejectors for efficient refrigeration and modelling of Multi Phase Multi Fluid flow in Ejectors
材料科学;物理学
Konar, D.^1
Research Scholar, Dept of Mechanical Engg., IIT Kharagpur, Kharagpur, W.Bengal
721302, India^1
关键词: Absorption cycles;    Conservation of mass;    Droplet diameters;    Evaporator pressure;    Refrigeration capacity;    Refrigeration system;    Thermal equilibriums;    Vapour absorptions;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/88/1/012060/pdf
DOI  :  10.1088/1757-899X/88/1/012060
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

The uses of ejector for efficient refrigeration are manifold: it has been used, among other applications, in the VCRS to reduce the compression ratio, in the combined ejector absorption cycle to enhance the refrigeration capacity and in the ejector absorber cycle to obtain lower evaporator pressures, higher absorber pressures and pre-absorption of the refrigerant in the ejector. Hence, modeling of flow which may be two phase two fluid as in ejector absorber cycle or two phase single fluid as in VCRS in an ejector assumes utmost importance. However, much work has not been done in this field. The primary objective of the present work is to discuss about the role of ejectors in various refrigeration systems and to model the two phase two fluid flow in the nozzle and the diffuser of an ejector under suitable assumptions. The equations of conservation of mass, momentum and energy have been solved to find the different flow properties like pressure, temperature and velocity of the two phases as function of the length in the diffuser. Different cases pertaining to different flows have been taken care of by appreciating what type of phenomena can actually occur at the interface of the two phases. Higher pressure rise was obtained for a given diffuser length with higher diffuser angles, smaller droplet diameter, higher inlet velocity of the gaseous phase and higher drag coefficients. Among other results, it was also seen that the two phases reached thermal equilibrium faster with higher diffuser angle, smaller droplet diameter and higher heat transfer coefficient.

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