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Numerical estimation of thermal load in a three blade vertically agitated mixer

机译:三叶片立式搅拌机热负荷的数值估算

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The objective of this study is to understand the flow physics and resulting heat transfer behind the mixing of highly viscous solid propellant in a vertical three blade mixer. The mixer comprises a four-winged central agitator rotating in the counter-clockwise direction and two other two-winged agitators rotating in clockwise direction. The temperature rises due to the shearing of the solid propellant. Uncontrolled temperature rise may result in the self-ignition of the propellant and other fire hazards. Thus it becomes important to quantify the heat generated due to viscous dissipation to attain a controlled atmosphere for mixing. A detailed CFD analysis is carried out, and two-dimensional energy equation with viscous dissipation term is solved to quantify the temperature rise due to viscous dissipation. The effect of angular velocity of the agitator and viscosity of the propellant over temperature rise is studied quantitatively using the overset method in OpenFOAM. The maximum velocity of the propellant is observed at the tip of agitators, whereas maximum temperature rise is found around the vicinity of the blade profile. A correlation is proposed to predict the temperature rise with time due to the viscous effect for the given range of angular velocity.
机译:这项研究的目的是了解在立式三叶片混合器中混合高粘度固体推进剂后的流动物理学以及由此产生的热传递。该混合器包括沿逆时针方向旋转的四翼中央搅拌器和沿顺时针方向旋转的另外两个双翼搅拌器。由于固体推进剂的剪切,温度升高。不受控制的温度升高可能导致推进剂自燃和其他火灾隐患。因此,量化由于粘性耗散而产生的热量以达到受控的混合气氛变得很重要。进行了详细的CFD分析,并求解了带有粘性耗散项的二维能量方程,以量化由于粘性耗散引起的温度升高。使用OpenFOAM中的过冲法定量研究了搅拌器角速度和推进剂粘度对温度升高的影响。在搅拌器的尖端观察到推进剂的最大速度,而在叶片轮廓附近发现最大的温度升高。对于给定的角速度范围,提出了一种相关性来预测由于粘性效应而导致的温度随时间的升高。

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