Parametric study of low-temperature solar-assisted flash evaporation desalination systems using two-phase water–steam ejector

IF 2.8 Q2 THERMODYNAMICS Heat Transfer Pub Date : 2024-07-02 DOI:10.1002/htj.23118
Mustafa S. Mahdi, Akram W. Ezzat, Eric Hu
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Abstract

This study aims to investigate a two-phase subsonic ejector added to a flash evaporation desalination system to increase the system productivity of distilled water. The flash evaporation was of low-temperature condition that it could be powered by a flat and evacuated tube solar water heater. A parametric study of superheat degree (range 5°C–25°C), back pressure (range 10–30 kPa of absolute pressure), primary fluid flow rate (range 1–3 L/min), nozzle diameter (range 1–3 mm), and salinity concentration (range 0%–7%) were investigated to examine the system productivity and the ejector performance in terms of its entertainment ratio under different operating conditions. Results show that the inclusion of the ejector led to an average of 99% improvement in system productivity, primarily through the efficient secondary flow. Moreover, the effect of the studied parameter was more pronounced in the considered flash evaporation desalination system as it has two places where flash evaporation occurs, compared with the normal system where the flash evaporation occurs at one place. All in all, the application of the ejector could enhance the system's productivity significantly under different operating conditions.

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使用两相水-蒸汽喷射器的低温太阳能辅助闪蒸海水淡化系统的参数研究
本研究旨在探讨在闪蒸海水淡化系统中加入两相亚音速喷射器,以提高蒸馏水的系统生产率。闪蒸的温度较低,可由一个扁平的真空管太阳能热水器提供动力。对过热度(范围 5°C-25°C)、背压(绝对压力范围 10-30 kPa)、一次流体流速(范围 1-3 L/min)、喷嘴直径(范围 1-3 mm)和盐度浓度(范围 0%-7%)进行了参数研究,以考察不同运行条件下的系统生产率和喷射器的娱乐比性能。结果表明,加入喷射器后,系统生产率平均提高了 99%,这主要是通过高效的二次流实现的。此外,在所考虑的闪蒸海水淡化系统中,所研究参数的影响更为明显,因为该系统有两个闪蒸点,而普通系统只有一个闪蒸点。总之,在不同的运行条件下,喷射器的应用可显著提高系统的生产率。
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来源期刊
Heat Transfer
Heat Transfer THERMODYNAMICS-
CiteScore
6.30
自引率
19.40%
发文量
342
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