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首页> 外文期刊>International Journal of Thermal Sciences >Enhancement of laminar convective heat transfer relying on excitation of transverse secondary swirl flow
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Enhancement of laminar convective heat transfer relying on excitation of transverse secondary swirl flow

机译:依靠横向二次旋流的激发来增强层流对流换热

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Laminar forced convective heat transfer is studied for the purpose of getting the best heat transfer performance with the least flow resistance increase. The variation calculus method is employed to establish the equations describing the optimized fluid velocity field and temperature field. Numerical solutions of the equations for a convective heat transfer process in a section-cut of a square duct indicate the optimized flow should have a transverse secondary swirl flow pattern consisting of multiple vortexes with identical swirl direction in the junction region of any two neighboring vortexes. We then propose the convective heat transfer enhancement method relying on excitation of transverse secondary swirl flow. To validate this method, we numerically study the heat transfer and flow resistance characteristics of laminar flows in tubes with four-reverse-vortex-generator (FRVG) inserts, four-homodromous-vortex-generator (FHVG) inserts, or a twisted tape insert. The calculated transverse secondary flow in the tube with the FRVG inserts approximately follows the optimized flow pattern and the tube is thus found to have the best thermo-hydraulic performance, validating the proposed convective heat transfer enhancement method.
机译:研究层流强迫对流换热的目的是获得最佳的传热性能,而流动阻力增加最小。采用变化演算法建立描述最佳流体速度场和温度场的方程。方管截面中对流传热过程方程的数值解表明,优化的流动应具有横向二次涡流模式,该模式由多个涡旋组成,该涡旋在任意两个相邻涡旋的交界区域具有相同的涡旋方向。然后,我们提出了基于对横向二次涡流激发的对流换热增强方法。为了验证该方法,我们对具有四反向涡流发生器(FRVG)插入件,四均涡流发生器(FHVG)插入件或扭曲带状插入件的管中层流的传热和流动阻力特性进行了数值研究。 。在带有FRVG插入件的管中计算出的横向二次流动大致遵循优化的流动模式,因此发现该管具有最佳的热工性能,从而验证了所提出的对流换热增强方法。

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