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Condensation of a Low-Pressure Refrigerant Inside a Multiport Minichannel

机译:低压制冷剂在多米远的低压制冷剂的凝结

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In the present paper experimental heat transfer coefficients taken during condensation of the low pressure fluid R236ea inside a multiport minichannel tube are presented. The test tube consists of eleven parallel rectangular minichannels with hydraulic diameter equal to 1,4 mm. The present authors have already measured condensation heat transfer coefficients of medium and high-pressure fluids R134a and R410A. The fluid used here presents a significantly lower reduced pressure in comparison with the above fluids. This means that the range of the reduced pressures in the experimental database will be significantly widened in order to develop accurate predictive correlations for the condensation HTC in presence of significant properties variation. The experimental runs are carried out at mass velocities ranging from 200 to 600 kg m{sup}(-2) s{sup}(-1) over the entire vapor quality range. Experimental results of two-phase heat transfer coefficient are compared against some semi empirical models available in the open literature. The paper shows that most of the models fairly well predict heat transfer coefficients at low mass velocity but they all seem to under-predict experimental values at higher gas velocities. This disagreement could be explained with the presence of the liquid entrainment in the minichannels.
机译:在本纸张中,呈现了在多端口迷你沟管内部的低压流体R236EA凝结期间截取的实验传热系数。试管由11平行矩形迷你漫画组成,液压直径等于1,4毫米。本作者已经测量了培养基和高压流体R134a和R410a的冷凝传热系数。与上述流体相比,这里使用的流体呈现显着降低的压力。这意味着在实验数据库中的降低压力范围将显着加宽,以便在存在显着性能变化的情况下开发冷凝HTC的准确预测相关性。在整个蒸汽质量范围内,实验运行在200至600kg m {sup}(-1)( - sup}( - 1)范围内的质量速度。将两相传热系数的实验结果与开放文献中可用的一些半实证模型进行比较。本文表明,大多数模型在低质量速度下相当好地预测热传递系数,但它们似乎在更高的气体速度下预测实验值。可以通过较小的液体夹带的存在来解释这种分歧。

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