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Numerical simulation study on the heat transfer of a spiral tube receiver designed to a thermal power tower.

机译:螺旋管接收机的传热仿真研究,螺旋管接收器设计为热电塔。

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in this work the heat transfer of a spiral tube receiver exposed to concentrated solar radiation is studied theoretically. The simulations were performed using Fluent6.3.26 for two different sections at several Reynolds numbers: 100, 300, 500, 700, and 1000 to see the effect of the inlet velocity on the outlet temperature. The effect of the inlet temperature is also discussed by varying the inlet temperature of the water of 293K to 313K The results show that the average temperature of the heating and adiabatic surface (inner wall) is decreasing when the velocity inlet is increasing. The outlet temperature of a semicircular section is higher than that of the circular section, but the Nusselt number of this one is twice higher as that of semicircular section and it's due to the geometrical shape of the section.
机译:在这项工作中,理论上研究了暴露于浓缩太阳辐射的螺旋管接收器的传热。使用FLUENT6.3.26进行模拟,用于在几个雷诺数:100,300,500,700和1000处进行两种不同的部分,以查看入口速度对出口温度的影响。还通过改变293K至313k的水的入口温度来讨论入口温度的效果,结果表明,当速度入口增加时,加热和绝热表面(内壁)的平均温度正在降低。半圆形部分的出口温度高于圆形部分的出口温度,但是这一的纽带数量是半圆形部分的两倍,并且由于该部分的几何形状,它是由于该截面的几何形状。

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