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DNS of conjugate heat transfer in presence of rough surfaces

机译:存在粗糙表面时共轭传热的DNS

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摘要

Often in the numerical simulations of turbulent heat transfer in a channel, the temperature is assigned as boundary condition at the wall. This condition is rather different from that in real experiments, where solid walls are thick and a constant temperature is imposed at the exterior of the walls. In the present work, rough channel flows with a Prandtl number P_(Γ_F) = v/α_F = 1 have been simulated transporting thermal fields in presence of walls with two different thermal diffusivities α_(Si). In one case, the thermal diffu-sivity corresponds to that of a material with conductivity 10 times greater than copper. In the other, the thermal diffusivity is that of glass. The upper wall of the channel is smooth and 0.5h thick (h being the half height of the channel). The lower wall is made of a rough layer of height k = 0.2h superimposed to a uniform layer 0.3h thick. Several simulations were performed varying the roughness elements. Above the crests plane the total stress has a linear behaviour as in a smooth channel. By normalising the total stress with the stress at the smooth wall, it has been found that the surface made by three-dimensional staggered cubes leads to a drag 2.3 times greater than that of smooth walls. On the other hand, for triangular longitudinal bars the drag reduces. The heat transfer is reduced for low conducting walls, however the influence of the shape of the roughness is similar to that for high conducting walls. This has been observed through flow visualizations and joint pdf between velocity and temperature fields.
机译:通常在通道中湍流传热的数值模拟中,将温度指定为壁的边界条件。此条件与实际实验中的条件大不相同,在实际实验中,实心壁很厚,并且在壁的外部施加了恒定的温度。在目前的工作中,已经模拟了在存在具有两个不同热扩散率α_(Si)的壁的情况下传输热场的Prandtl数P_(Γ_F)= v /α_F= 1的粗糙通道流动。在一种情况下,热扩散率对应于电导率是铜的10倍的材料的热扩散率。另一方面,热扩散率是玻璃的。通道的上壁光滑且厚度为0.5h(h是通道的一半高度)。下壁由高度k = 0.2h的粗糙层与厚度为0.3h的均匀层叠加而成。改变粗糙度元素进行了几次模拟。在波峰平面上方,总应力具有线性特性,如在平滑通道中一样。通过用光滑壁上的应力对总应力进行归一化,发现由三维交错立方体制成的表面产生的阻力是光滑壁的2.3倍。另一方面,对于三角形的纵向条,阻力减小。对于低传导壁,传热减少,但是,粗糙度形状的影响与高传导壁的相似。通过流动可视化以及速度和温度场之间的联合pdf可以观察到这一点。

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  • 作者单位

    Dipartimento di Ingegneria Meccanica e Aerospaziale, Universita di Roma 'La Sapienza', Via Eudossiana 16, Roma, Italy;

    Dipartimento di Ingegneria Meccanica e Aerospaziale, Universita di Roma 'La Sapienza', Via Eudossiana 16, Roma, Italy;

    Dept. Mechanical Engineering, The University of Texas at Dallas, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heat transfer; Roughness; Conjugate heat transfer;

    机译:传播热量;粗糙度共轭传热;

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