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Fully Developed Convective Heat Transfer of Power Law Fluids in a Circular Tube

Fully Developed Convective Heat Transfer of Power Law Fluids in a Circular Tube
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摘要 We present a theoretical analysis for fully developed convective beat transfer in a circular tube for power law fluids by assuming that the thermal diffusivity is a function of temperature gradient. The analytical eolution is obtained and the heat transfer behaviour is investigated under a constant heat flux boundary condition. It is shown that the Nusselt number strongly depends on the value of power law index n. The Nusselt number sharply decreases in the range of 0 〈 n 〈 0.1. However, for n 〉 0.5, the Nusselt number decreases monotonically with the increasing n, and for n 〉 20, the values of Nusselt number approach a constant. We present a theoretical analysis for fully developed convective beat transfer in a circular tube for power law fluids by assuming that the thermal diffusivity is a function of temperature gradient. The analytical eolution is obtained and the heat transfer behaviour is investigated under a constant heat flux boundary condition. It is shown that the Nusselt number strongly depends on the value of power law index n. The Nusselt number sharply decreases in the range of 0 〈 n 〈 0.1. However, for n 〉 0.5, the Nusselt number decreases monotonically with the increasing n, and for n 〉 20, the values of Nusselt number approach a constant.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2008年第1期195-197,共3页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundations of China under Grant No 50476083.
关键词 NON-NEWTONIAN FLUIDS CONTINUOUS MOVING SURFACE BOUNDARY-VALUE PROBLEM MIXED CONVECTION PSEUDOPLASTIC FLUIDS VERTICAL PLATE LAYER-FLOW MOMENTUM INJECTION WALL NON-NEWTONIAN FLUIDS CONTINUOUS MOVING SURFACE BOUNDARY-VALUE PROBLEM MIXED CONVECTION PSEUDOPLASTIC FLUIDS VERTICAL PLATE LAYER-FLOW MOMENTUM INJECTION WALL
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