首页> 外文会议>International Mechanical Engineering Congress and Exposition >(V08AT09A029) LATTICE BOLTZMANN METHOD SIMULATION ON FLOW PATTERNS OF NATURAL CONVECTION IN HORIZONTAL CYLINDRICAL ANNULUS
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(V08AT09A029) LATTICE BOLTZMANN METHOD SIMULATION ON FLOW PATTERNS OF NATURAL CONVECTION IN HORIZONTAL CYLINDRICAL ANNULUS

机译:(V08AT09A029)水平圆柱环空转模式的晶格Boltzmann方法模拟

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The Lattice Boltzmann method is used to simulate the flow patterns of natural convection in horizontal cylindrical annulus for aspect ratios in the range of 0.4≤A≤10 and for Prandtl numbers varying from 0.1 to 0.7. At Pr=0.3 and A=2, flow patterns on the whole range of Rayleigh number are mapped indicating the lower and upper critical values for transitions. At Pr=0.7, the influence of aspect ratio on flow pattern is analyzed acquiring the result that the oscillation flow never happens at A≤3. At A=2, several Prandtl numbers are calculated at certain Rayleigh number and the conclusion is that the steady upward flow keeps when 0.5≤Pr. The results are found in good agreement with existed studies.
机译:格子Boltzmann方法用于模拟水平圆柱形环中的自然对流的流动模式,在0.4≤a≤10的范围内,并且对于从0.1至0.7的普朗特数而变化的普朗特数。在Pr = 0.3和A = 2,绘制整个RAYLEIGH数范围的流模式映射,指示转换的较低和上临界值。在Pr = 0.7处,分析了纵横比对流动模式的影响获取,使得振荡流从未发生在≤3。在A = 2时,在某些瑞利数计算几个普朗特数,结论是当0.5≤pr时保持稳定向上流动。结果是与存在的研究良好的协议。

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