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Experiments In Single-phase Natural Circulation Miniloops With Different Working Fluids And Geometries

机译:不同工作流体和几何形状的单相自然循环微型回路的实验

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The aim of this work is to analyze experimentally the influence of geometrical parameters and fluid properties on the thermal performances of rectangular single-phase natural circulation miniloops, which could be used for cooling of electronic devices. The present paper analyzes two experimental campaigns performed on two rectangular miniloops (ML1 and ML2), characterized by different heights, when two working fluids (water and FC43) are employed. The temperature trends are measured for different combinations of miniloop inclination and power, and the associated fluid velocities are calculated by means of an enthalpy balance. The experimental data are compared with Vijayan 's model, developed for large scale loops in steady-state conditions, corrected with a parameter that takes into account the loop inclination. The dynamical behavior is always stable. The time of the initial transient is long at high miniloop inclination (close to horizontal) and at low power, while the temperature overshoot grows up with increasing power and inclination. Results show that at the same power the velocity of FC43 is almost twice than that of water, but the thermal performances are worse because FC43 is characterized by low specific heat. Moreover, the velocities of the tallest miniloop are the lowest, probably because the enhancement of shear stresses overcomes the increase in buoyancy forces. For both fluids, the velocity grows almost linearly with power. Experimental data show a good agreement with the modified Vijayan's model.
机译:这项工作的目的是通过实验分析几何参数和流体特性对矩形单相自然循环微型环的热性能的影响,该环可用于电子设备的冷却。当使用两种工作流体(水和FC43)时,本文分析了在两个矩形微型回路(ML1和ML2)上进行的两个实验运动,这些回路的高度不同。针对微型环倾角和功率的不同组合测量温度趋势,并通过焓平衡计算相关的流体速度。将实验数据与为稳定状态条件下的大型环路开发的Vijayan模型进行了比较,并使用考虑了环路倾斜度的参数进行了校正。动态行为始终稳定。在小回路高倾角(接近水平)和低功率下,初始瞬态时间较长,而温度超调随功率和倾角的增加而增大。结果表明,在相同功率下,FC43的速度几乎是水的两倍,但由于FC43具有低比热的特征,因此热性能更差。此外,最高的迷你环的速度最低,这可能是因为剪应力的增加克服了浮力的增加。对于两种流体,速度几乎都随功率线性增长。实验数据表明,该模型与改进的Vijayan模型具有很好的一致性。

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