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管内周期性自旋流强化传热的结构优化

Structural optimization of twisted-leaves based on heat transfer enhancement for periodic free swirl flow in tube

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【作者】 王杨君邓先和洪蒙纳李志武

【Author】 WANG Yangjun~ 1,2 , DENG Xianhe~1, HONG Mengna~1, LI Zhiwu~ 1 (~1Key Laboratory of Enhanced Heat Transfer and Energy Conservation,Ministry of Education, South China University of Technology, Guangzhou 510640, Guangdong, China; ~2School of Environmental and Chemical Engineering, Shanghai University, Shanghai 201800, China)

【机构】 华南理工大学教育部传热强化与过程节能重点实验室华南理工大学教育部传热强化与过程节能重点实验室 广东广州510640上海大学环境与化学工程学院上海201800广东广州510640

【摘要】 在圆管内间隔插入多个旋流片的流道中,流体流动呈现周期性自旋流.用数值模拟方法对空气湍流情况的传热和流阻性能受相邻旋流片间距Lp、旋流角β和旋转角α3个因素的影响进行了分析,并得出旋流片的优化结构,而且实验验证了数值模拟预测的正确性.结果表明:α越大,传热性能越好,阻力越大;Lp越小,传热性能越好,阻力越大;β越大,传热性能越好,而阻力损失因受到摩擦阻力和形体阻力的综合影响而呈现非单调变化.旋流片的最佳结构参数为:旋流角β为20·3°,旋转角α为180°,相邻旋流片间距Lp为33d.与α相比,β对传热和流阻性能的影响更显著.

【Abstract】 The influences of twisted-leaf piech L_ p ,swirl angle β and twist angle α on the characteristics of heat transfer and flow resistance of plain circular tube with inserted twisted-leaves discontinuously for air turbulent flow were analyzed in detail by numerical simulation and the optimized structure of the twisted-leaves was obtained based on heat transfer enhancement valuation factor η.In addition, the numerical simulation predictions were verified by experiment.The results indicated that the larger the α, the better the performance of heat transfer and the greater the flow resistance; the larger the L_ p , the worse the performance of heat transfer and the smaller the flow resistance; the larger the β, the better performance of heat transfer while the variation of flow resistance was not monotone because of the combined control of friction resistance and shape drag.The optimized structure parameters of twisted-leaf were swirl angle β=20.3°,twist angle α=180°,twisted-leaf pitch L_ p =33d(d means the width of twisted-leaf).Furthermore, compared with twist angle α, the influence of swirl angle β on heat transfer enhancement was much stronger.

【基金】 国家重点基础研究发展计划项目(G2000026301).~~
  • 【文献出处】 化工学报 ,Journal of Chemical Industry and Engineering(China) , 编辑部邮箱 ,2006年11期
  • 【分类号】TK124
  • 【被引频次】22
  • 【下载频次】202
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