[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Jeong et al., 2009 - Google Patents

CFD analysis of flow phenomena inside thermo vapor compressor influenced by operating conditions and converging duct angles

Jeong et al., 2009

View PDF
Document ID
7916019357702434965
Author
Jeong H
Utomo T
Ji M
Lee Y
Lee G
Chung H
Publication year
Publication venue
Journal of mechanical science and technology

External Links

Snippet

A thermo vapor compressor is simply a steam ejector employed in a multi effect desalination process. A greater understanding of flow phenomena inside an ejector plays an important role in its performance improvement. In this paper, CFD investigation has been carried out to …
Continue reading at www.j-mst.org (PDF) (other versions)

Similar Documents

Publication Publication Date Title
Ji et al. CFD investigation on the flow structure inside thermo vapor compressor
Fu et al. Numerical study for the influences of primary nozzle on steam ejector performance
Jeong et al. CFD analysis of flow phenomena inside thermo vapor compressor influenced by operating conditions and converging duct angles
Broumand et al. A model for predicting the trajectory of a liquid jet in a subsonic gaseous crossflow
Kong et al. Numerical analysis of Chevron nozzle effects on performance of the supersonic ejector-diffuser system
Hassanzadeh et al. Numerical study of the effect of wall injection on the cavitation phenomenon in diesel injector
Ma et al. A streamlining method for ejector nozzle profile optimization based on polynomial function
Zhang et al. Effect of the opening of a butterfly valve on the dynamic evolution of cavitation
Nazeer et al. The influence of geometrical and operational parameters on internal flow characteristics of internally mixing twin-fluid Y-jet atomizers
Li et al. Impact of inlet steam state on ejector internal flow and performance considering non-equilibrium condensation
Mishra et al. A Technical Review on effect of spray angles and characteristics for a pintle injector
Ariafar et al. Effect of Nozzle Geometry on a Model Thermocompressor Performance–a Numerical Evaluation
CN106528971A (en) A method and a system for determining the relationship between the size of a throat and the thickness of a liquid film of a crude oil refining nozzle
Lee et al. Studies on ejector systems for hydrogen fuel cell
Falsafioon et al. A numerical and experimental study of ejector internal flow structure and geometry modification for maximized performance
Wen et al. Effects of swirls on natural gas flow in supersonic separators
Elgezzar et al. CFD Analysis and Geometrical Parameter Investigation For The Design of A High-Efficiency Supersonic Ejector.
Kurniawan et al. CFD simulation and efficiency analysis of natural gas ejector-booster system
Kuznetsov et al. Verification of the calculation modeling methods of the atomizing of a gas and gas-liquid stream from a pneumatic nozzle
Nguyen et al. An Approach to Design an Air–Liquid Supersonic Ejector for Producing Aerosol Spray
Yang et al. Numerical prediction of jet behavior of thermal vapor compressor
Zhang et al. Numerical Simulation and Experimental Study on Ejector of Lubricating Oil System of Gas Turbine Engine
Ghonim et al. Optimization of Steam Ejector Performance Using CFD
Firman et al. Steam Pressure Characteristics on Converging-Divergent Injectors with Varying Suction Diameters
Effendy et al. Performance of liquid-gas ejector with curve diffuser in vertical flow