首页> 外文期刊>International Journal of Heat and Fluid Flow >Effect of temperature gradient within a solid particle on the rotation and oscillation modes in solid-dispersed two-phase flows
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Effect of temperature gradient within a solid particle on the rotation and oscillation modes in solid-dispersed two-phase flows

机译:固体颗粒内温度梯度对固相分散两相流中旋转和振荡模式的影响

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摘要

Liquid-solid two-phase flow with heat transfer is simulated, and the effect of temperature gradient within a solid particle on the particle behaviour and heat transfer is studied. The interaction between fluid and particles is considered with our original immersed solid approach on a rectangular grid system. The local heat flux at the fluid-solid interface is described with an anisotropic heat conductivity matrix, and the governing equation of temperature is time-updated with an implicit treatment for the diffusion term. The method is applied to a 2-D natural convection flow of a relatively low Rayleigh number including multiple particles. Heat transfer and particle behaviours are studied for different solid heat conductivities (ratio to the fluid conductivity ranging between 10~(-3) and 10~3) and solid volume fractions. Under a condition of relatively low heat conductivity ratio, the particles show a simple circulating flow. By increasing the heat conductivity ratio, a transition of the particulate flow is observed to oscillation mode around the domain centre due to the buoyancy force as a restitution force. The oscillation period is found to vary with the heat conductivity ratio, and it is related to the time scales for the heat transfer via fluid and solid.
机译:模拟了具有传热的液固两相流,研究了固体颗粒内部温度梯度对颗粒行为和传热的影响。我们在矩形网格系统上使用我们最初的沉浸式固体方法考虑了流体和颗粒之间的相互作用。用各向异性导热系数矩阵描述了流固界面处的局部热通量,并通过对扩散项的隐式处理来及时更新温度控制方程。该方法被应用于具有多个颗粒的相对较低的瑞利数的二维自然对流。研究了不同固体热导率(相对于流体电导率在10〜(-3)和10〜3之间的比率)和固体体积分数的传热和颗粒行为。在相对较低的导热率的条件下,颗粒表现出简单的循环流。通过增加热导率,由于作为恢复力的浮力,观察到颗粒流向畴中心周围的振荡模式的转变。发现振荡周期随导热率而变化,并且与通过流体和固体进行热传递的时间尺度有关。

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