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Thermal conductivity of suspensions in shear flow fields

机译:剪切流场中悬浮液的热导率

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In the present article, the rheological behavior and the thermal conductivity of suspensions were investigated experimentally by examining the effects of shear rate, particle size, and volume concentration. The thermal conductivity measurements were conducted under rotating Couette flow conditions with a varying rotational speed of the outer cylinder. Homogeneous test suspensions were prepared with uniformly dispersed and neutrally buoyant micro-particles. Four different sizes of plastic particles (25-300 μ m) were used as suspended particles. The volume concentrations of the particles and shear rates varied within the ranges of 0-l0/100 and 0-900 l/s, respectively. For the test suspensions, the limiting viscosities at high shear rates were correlated with the Batchelor equation. The highly concentrated suspension in the present study showed the shear thinning viscosity. The thermal conductivities measured at stationary condition showed excellent agreements with values in saturated water table and were correlated satisfactorily with the Brailsford-Major equation. The thermal conductivity of the test suspensions in shear flow increased with shear rate and displayed asymptotic plateau values at high shear rates. The shear-rate- dependent conductivity was strongly affected by both particle size and volume concentration in shear flow field.
机译:在本文中,通过研究剪切速率,粒径和体积浓度的影响,对悬浮液的流变行为和导热系数进行了实验研究。在旋转的库埃特流量条件下,以变化的外筒转速进行导热系数测量。制备具有均匀分散的中性浮力微粒的均质测试悬浮液。四种不同尺寸的塑料颗粒(25-300μm)用作悬浮颗粒。颗粒的体积浓度和剪切速率分别在0-10.0 / 100和0-190l / s的范围内变化。对于测试悬浮液,在高剪切速率下的极限粘度与Batchelor方程相关。本研究中的高浓度悬浮液显示出剪切稀化粘度。固定条件下测得的热导率与饱和水位中的值表现出极好的一致性,并且与Brailsford-Major方程令人满意地相关。测试悬浮液在剪切流中的热导率随剪切速率的增加而增加,并在高剪切速率下显示出渐近的平稳值。剪切速率相关的电导率在剪切流场中受到粒径和体积浓度的强烈影响。

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