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Optimization of thermal performance of Ranque Hilsch Vortex Tube: MADM techniques

机译:Ranque Hilsch Vortex管的热性能优化:MADM技术

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Thermal performance of vortex tube is noticeably influenced by its geometrical and operational parameters. In this study effect of various geometrical (L/D ratio: 15, 16, 17, 18; exit valve angle; 30°, 45°, 60°, 75°, 90°; cold end orifice diameter: 5, 6 and 7mm, tube divergence angle: 0°, 2°, 3°, 4°) and operational parameters (inlet pressure: 2 to 6 bars) on the performance of vortex tube have been investigated experimentally. Multiple Attribute Decision Making (MADM) techniques are applied to determine the optimum combination of the vortex tube. Performance of vortex tube was analysed with optimum temperature difference on cold end, COP for cooling. The MADM (Multiple Attribute Decision Making) methods, namely WSM (Weighted Sum Method), WPM (Weighted Power Method), TOPSIS (Technique for Order Preference by Similarity to Ideal Solution) and AHP (Analytical Hierarchy Process) are applied. Experimental best performing combinations are obtained for Length to Diameter ratios 15, 16, 17 with exit valve angle as 45°, 75° and 90° at orifice diameter 5mm for inlet pressure of 5 and 6 bar pressure. Best COP, efficiency and cold end temperature difference are 0.245, 40.6% and 38.3K respectively for the combination of 15 L/D, 45° valve angle, 5mm orifice diameter and 2 bar pressure by MADM techniques.
机译:涡流管的热性能是通过显着其几何和操作参数的影响。在各种几何(L / d比率的本研究中的效果:15,16,17,18;出口阀角; 30°,45°,60°,75°,90°;冷端孔口直径:5,6和7毫米,管发散角:0°,2°,3°,4°)和操作参数(入口压力:对涡流管的性能2至6巴)已经被实验研究。多属性决策(MADM)技术被应用于确定涡流管的最佳组合。涡流管的性能与冷端最适温度差,COP用于冷却进行了分析。该MADM(多属性决策)方式,即WSM(加权和法),WPM(加权幂法),TOPSIS(技术订购偏好逼近理想解决方案)和AHP(层次分析法)应用。实验表现最好的组合是在孔直径为5mm 5和6巴压力的入口压力为长度而获得对直径比率15,16,17与出口阀角为45°,75°和90°。最好COP,高效率和冷端温度差是0.245,40.6%和38.3K分别为15 L / d,45°角阀的5mm孔口直径和由MADM技术2巴压力的组合。

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