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首页> 外文期刊>International Journal of Refrigeration >An experimental investigation of natural convection heat transfer from a helically coiled heat exchanger
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An experimental investigation of natural convection heat transfer from a helically coiled heat exchanger

机译:螺旋盘绕热交换器自然对流热传递的实验研究

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摘要

The natural convection heat transfer over the outer surface of a helically coiled tube heat exchanger located inside a water storage tank is investigated experimentally in the present study. The fluid inside the coil is R-134a with phase changing. Seventeen helical coils are applied to study the effect of coil diameter, pitch, turns, and mass flow rate on the outside Nusselt number (Nuof), overall coefficient of performance of the refrigeration cycle (COPov), and destroyed exergy (EXdes). A new empirical correlation is presented forNuofwith respect to the Rayleigh number (Ra) and coil parameters as the characteristic length. Several characteristic lengths are used to numerically predict the temperature of water based on the presented correlation. The best result, in comparison with the experimental data, was obtained for coil length as the characteristic length. The Rayleigh number based on coil length is in the range of5.01×1010?7×1011. The best coil based on minimumEXdesand maximumCOPovis introduced. Results indicate thatNuof, COPovandEXdesincrease with enhancing coil diameter while the other parameters are constant.
机译:在本研究中实验研究位于储水罐内的螺旋盘管热交换器的外表面上的自然对流传热。线圈内的流体是具有相变的R-134a。应用十七个螺旋线圈来研究线圈直径,俯仰,转弯和质量流量对外部露珠数(NUOF)的影响,制冷循环(Copov)的总体性能系数,并破坏驱动(exdes)。作为特征长度的思维向瑞利数(RA)和线圈参数呈现了新的经验相关性。几种特征长度用于数值上预测水的温度,基于所提出的相关性。与实验数据相比,获得的最佳结果用于线圈长度作为特征长度。基于线圈长度的瑞利数在5.01×1010?7×1011的范围内。基于MinumpueExDesand的最佳线圈引入。结果表明,具有提高线圈直径的Copovandexdesincrease,而其他参数是恒定的。

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