Abstract
This is an experimental work performed to identify the influence of direct contact condensation inside an eductor. The fluid used in the experiments is water in two different phases: liquid and vapor, for primary and secondary flows, respectively. This study was conducted in an attempt to establish the suitability of an eductor as a combined vacuum generator and condenser for membrane desalination applications. The pressure and temperature measurements at critical points in the flow paths have been summarized to identify the influence of primary flow on secondary fluid saturation and condensation. In addition, the mechanism of phase change has been explained through the photography of fluid flow in a two-dimensional eductor. A consistent oscillation of the gas-liquid interface was observed during steady-state operations of the eductor. This work also contributes to the validation of future computational research. It will provide a baseline for computational thermal fluid analysis related to the mixing of condensing and non-condensing flow. In general, the research encompasses the practical operational scenario and provides information on the heat and mass transfer of direct contact condensation with a finite secondary source.
Subject
Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction
Reference21 articles.
1. Koirala, R., Ve, Q.L., Date, A., Inthavong, I., and Akbarzadeh, A. (2021). Influence of inlet pressure and geometric variations on the applicability of Eductor in low temperature thermal desalinations. J. King Saud Univ. Eng. Sci.
2. Physics of vacuum generation in zero-secondary flow ejectors;Phys. Fluids,2018
3. Numerical investigation on the mixing process in a steam ejector with different nozzle structures;Int. J. Therm. Sci.,2012
4. Ksenofontov, B., Vasilieva, Y., and Kaptinova, S. (2019). IOP Conference Series: Materials Science and Engineering, IOP Publishing.
5. Water Jet Pump;J. Hydraul. Div.,1964
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献