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首页> 外文期刊>International Journal of Thermal Sciences >Numerical prediction of turbulent flow and heat transfer in helically coiled pipes
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Numerical prediction of turbulent flow and heat transfer in helically coiled pipes

机译:螺旋盘管内湍流和传热的数值预测

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摘要

Computational results were obtained for turbulent flow and heat transfer in curved pipes, representative of helically coiled heat exchangers. Following a grid refinement study, grid independent predictions from alternative turbulence models (k-ε, SST k-ω and RSM-ω) were compared with DNS results and experimental pressure drop and heat transfer data. Using the SST k-ω and RSM-ω models, pressure drop results were in excellent agreement with literature data and the Ito correlation. For heat transfer, the literature is not comparably complete or accurate, but a satisfactory agreement was obtained in the range of available data. Unsatisfactory results, both for pressure drop and heat transfer, were given by the k-ε model with wall functions. Following the validation study, the RSM-ω model was used to compute friction coefficients and Nusselt numbers in the range Re = 1.4·10~4 - 8·10~4, Pr = 0.7-5.6 and δ (coil curvature) = 3·10~(-3)-0.3. Power-law correlations were found unsuitable to fit the Re-, Pr- and δ-dependence of the Nusselt number, while the use of a properly formulated momentum-heat transfer analogy collapsed all results with high accuracy.
机译:获得了代表弯管式换热器的弯管中的紊流和传热的计算结果。经过网格细化研究,将来自替代湍流模型(k-ε,SSTk-ω和RSM-ω)的与网格无关的预测与DNS结果以及实验压降和传热数据进行了比较。使用SSTk-ω和RSM-ω模型,压降结果与文献数据和Ito相关性非常吻合。对于传热,文献不是相对完整或准确的,但是在可用数据范围内获得了令人满意的协议。具有壁函数的k-ε模型给出的压降和传热结果均不令人满意。经过验证研究,使用RSM-ω模型计算Re = 1.4·10〜4-8·10〜4,Pr = 0.7-5.6和δ(线圈曲率)= 3·时的摩擦系数和Nusselt数。 10〜(-3)-0.3。发现幂律相关性不适合适应Nusselt数的Re,Pr和δ依赖性,而使用适当公式化的动量-热传递类比可以使所有结果高精度地崩溃。

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