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Studying the influence of refrigerant type on thermal efficiency of annular two-phase flows; mass transfer viewpoint

机译:研究制冷剂类型对环形两相流热效率的影响;传质观点

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摘要

Many parameters influence the thermal efficiency of two-phase systems; among them, the type of refrigerant employed in two-phase systems is of great importance. Carbon dioxide has been reintroduced as a possible R22 replacement, because of having more heat transfer rate and lower pressure drops, along with better environmental treatment compared with widely-used refrigerants. In the present article carbon dioxide is studied and compared with some thermo-physically-different refrigerants from the viewpoint of probability of dry-out occurrence. Dry-out phenomenon in two-phase systems should be avoided as far as possible to prevent sudden drops in heat transfer. Dry-out occurrence is strongly influenced by entrainment mass transfer. In the present study a semi-empirical model is proposed for simulation of entrainment mass transfer in annular flow regime of liquid-vapor in a vertical tube. The significance of entrainment phenomenon in carbon dioxide is compared with that of some other refrigerants to figure out the probability of dry-out occurrence in different refrigerants. It will be demonstrated that C02 relative to other refrigerants has much lower amounts of entrainment. This issue along with other mentioned advantages shows the prominent effectiveness of carbon dioxide among other conventional refrigerants.
机译:许多参数会影响两相系统的热效率。其中,两相系统中使用的制冷剂类型非常重要。与广泛使用的制冷剂相比,由于具有更高的传热速率和更低的压降,以及更好的环境处理,二氧化碳已被重新引入以替代R22。在本文中,从发生干from的可能性的角度研究了二氧化碳并将其与一些热物理差异的制冷剂进行了比较。应尽可能避免两相系统中的干透现象,以防止传热突然下降。夹带传质严重影响了变干的发生。在本研究中,提出了一个半经验模型,用于模拟垂直管中液体-蒸汽的环形流动状态下的夹带传质。将二氧化碳中夹带现象的重要性与其他一些制冷剂的重要性进行了比较,以计算出不同制冷剂中发生变干的可能性。将证明相对于其他制冷剂,CO 2的夹带量低得多。这个问题以及其他提到的优点表明,在其他常规制冷剂中,二氧化碳具有显着的有效性。

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