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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Numerical Investigations of Flow and Heat Transfer Characteristics Between Turbulent Double Jet Impingement and a Moving Plate
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Numerical Investigations of Flow and Heat Transfer Characteristics Between Turbulent Double Jet Impingement and a Moving Plate

机译:湍流双喷射冲击与移动板的流动和传热特性的数值研究

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摘要

The analysis of fluid flow and heat transfer characteristics of double turbulent jet flow impinging on a stationary and moving plate has been numerically studied. Unsteady-state two-dimensional incompressible turbulent forced convection flow is considered for present analysis. Turbulence is modelled by the Reynolds-averaged Navier-Stokes (RANS) equation with the k - epsilon model and enhanced wall treatment. The governing equations are solved using a finite volume based commercial solver. The results for the effect of single jet and double jet, jet Reynolds number, plate velocity, location, and center spacing between the two jets on flow and heat transfer characteristics are reported. The results show that the enhancement of heat transfer is 32.70% for the double jet compared with the single jet impingement on a stationary plate. As significant enhancement of heat transfer is observed with an increase in the second jet Reynolds number and plate velocity. The results show that the size and shape of the recirculation zones between jets are greatly altered with respect to spacing between the jets to the plate and the center distance between the jets. The results show that the enhancement of heat transfer is 37.3% for moving plate velocity due to a decrease in the spacing between the jets and the plate from 6 to 4. Results show that the local peak Nusselt number is influenced by the plate velocity. These results are validated by experimental and numerical results available in the literature.
机译:在数值研究了撞击静止和移动板上的双湍流喷射流体的流体流动和传热特性的分析。不稳定状态二维不可压缩的湍流强制对流流量被认为是目前的分析。湍流由雷诺平均的Navier-Stokes(RAN)方程建模,具有K - epsilon模型和增强的壁处理。使用基于有限卷的商业求解器来解决控制方程。报道了单射流和双射流,喷射雷诺数,板速度,位置和中心间距在流动和传热特性上的效果的结果。结果表明,与固定板上的单喷射冲击相比,双喷射的热传递增强为32.70%。随着第二次喷射雷诺数和板速度的增加,观察到传热的显着增强。结果表明,相对于喷射到板之间的间隔和喷射之间的中心距离,射流之间的再循环区域的尺寸和形状大大改变。结果表明,由于喷射器和板之间的间距减小,传热的增强是移动板速度的37.3%,从6到4.结果表明,局部峰值露珠受板速度的影响。这些结果通过文献中可用的实验和数值结果验证。

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