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Thermocapillary effect on drying of a polymer solution under non-uniform radiant heating

机译:非均匀辐射加热下热毛细作用对聚合物溶液干燥的影响

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摘要

This theoretical investigation analyzes the two-dimensional heat and mass transfer characteristics arising from the non-uniform radiant incidence in polymer solutions whose motion is governed by combined thermocapillary/ buoyancy laminar flow. Also considered herein is the evaporation of solvent at solution surface. The effects of various radiation input, external convective parameters, and important physical properties of solutions on the drying characteristics are investigated and results are presented in terms of flow, thermal. and concentration fields, and rate of water removal. In addition, the influence of thermocapillary effect on drying features is also examined. Numerical results indicate that absorbed energy and distribution of the solvent concentration dominate the drying rate. At larger surface tension Reynolds number, more mass concentration can be transferred by thermocapillary flow from the interior region to the surface, which then increases drying rate. Furthermore, removing the solid wall effect reduces the drying time required for a solution film with two sides of symmetric surfaces, which is irradiated by an array of infrared radiant heaters.
机译:这项理论研究分析了二维二维的传热和传质特性,这些特性是由聚合物溶液的不均匀辐射入射引起的,聚合物溶液的运动受热毛细管/浮力层流的联合作用控制。本文还考虑了溶剂在溶液表面的蒸发。研究了各种辐射输入,外部对流参数以及溶液的重要物理性质对干燥特性的影响,并以流动,热方面给出了结果。和浓度场以及除水率。另外,还研究了热毛细管效应对干燥特征的影响。数值结果表明,吸收能和溶剂浓度的分布决定了干燥速率。在更大的表面张力雷诺数下,更多的质量浓度可以通过热毛细管流从内部区域传递到表面,从而提高干燥速率。此外,消除固体壁效应减少了具有对称表面的两侧的溶液膜所需的干燥时间,该溶液膜被一系列红外辐射加热器照射。

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