首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >NUMERICAL SIMULATION OF HEAT TRANSFER IN SHEAR FLOW OF LIQUID- SOLID TWO-PHASE MEDIA BY IMMERSED SOLID APPROACH
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NUMERICAL SIMULATION OF HEAT TRANSFER IN SHEAR FLOW OF LIQUID- SOLID TWO-PHASE MEDIA BY IMMERSED SOLID APPROACH

机译:沉浸法在固液两相流剪切流中传热的数值模拟

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We developed a direct numerical simulation (DNS) method of solid-fluid two-phase flows to study the effects of heat conductivity within a solid particle and the particle motion on the heat transfer. Heat transfer and particle behaviors were studied for different ratios of heat conductivity (solid to liquid) and solid volume fractions. The simulation results emphasize the effect of temperature distributions within the particles, and the heat transfer through each particle plays an important role for the motion of the particulate flow. The particle-laden flow in a two-dimensional channel of instable thermal stratification, namely hot wall at the bottom and cold wall at the top, is simulated. In the two-dimensional computation, the heat transfer attenuates by increasing the neutral conductive particles because of the resistance to the thermal convection. In case of highly conductive particles, the thermal convection and conductions are enhanced to some extent of addition but the overload of particles suddenly reduces the intensity of convection, resulting in the lower heat transfer. The inverse gradient of mean temperature is observed particularly in case of moderate loading of neutral conductive particles. It is due to the modulation of the profile of convection cells. Most of the above-mentioned findings are reproduced by the fully three-dimensional simulation.
机译:我们开发了一种固相两相流的直接数值模拟(DNS)方法,以研究固体颗粒内部的热导率和颗粒运动对传热的影响。研究了热导率(固体对液体)和固体体积分数的不同比率下的传热和颗粒行为。模拟结果强调了颗粒内温度分布的影响,并且通过每个颗粒的传热对于颗粒流的运动起着重要作用。模拟了不稳定热分层的二维通道中的载有颗粒的流动,即底部为热壁,顶部为冷壁。在二维计算中,由于对热对流的阻力,传热通过增加中性导电颗粒而衰减。在高传导性粒子的情况下,热对流和传导在某种程度上得以增强,但是粒子的过载突然降低了对流的强度,从而导致较低的热传递。特别是在适度加载中性导电颗粒的情况下,观察到平均温度的反梯度。这是由于对流单元轮廓的调制。上面提到的大多数发现都是通过完全三维模拟得到的。

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