首页> 外文会议>International Conference on Computational Methods and Experimental Measurements(CMEM/07); 2007; Prague(CZ) >Effect of thermal boundary conditions on conjugate natural convection flow in vertical eccentric annuli
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Effect of thermal boundary conditions on conjugate natural convection flow in vertical eccentric annuli

机译:热边界条件对垂直偏心环空中共轭自然对流的影响

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The effect of thermal boundary conditions on conjugate laminar natural convection heat transfer in vertical eccentric annuli is numerically investigated using the finite-difference technique. Numerical results are presented for a Newtonian fluid of Prandtl number 0.7 in an eccentric annulus. The variation of induced flow rate and total heat absorbed in the annulus are studied for two sets of boundary conditions at different values of geometry parameters (dimensionless annulus eccentricity and radius ratio). In both sets of boundary conditions, one wall is heated isothermally. The other wall is kept at the inlet fluid temperature for the first set of boundary conditions and adiabatic for the second set. The effect of interchanging the wall thermal conditions for each set is also considered. Analysis reveals that heating the outer cylinder wall or keeping one of the annulus walls insulated is more useful for inducing flow (thermo-siphons).
机译:利用有限差分技术,数值研究了热边界条件对垂直偏心环空中共轭层流自然对流换热的影响。数值结果显示了偏心环中普朗特数为0.7的牛顿流体。研究了两组边界条件在不同几何参数值(无量纲环偏心率和半径比)下的诱导流量和在环面吸收的总热量的变化。在两组边界条件下,一壁均等温加热。另一壁对于第一组边界条件保持在入口流体温度,而对于第二组边界则保持绝热。还考虑了互换每组壁热条件的影响。分析表明,加热外圆柱壁或使其中一个环空壁保持绝缘对于诱导流动(热虹吸管)更有用。

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