不同压头下3D打印冲击轮透平性能分析

L. Lebea, T. Gaonnwe
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摘要

3D打印机的使用越来越多,使得在不影响组件结构完整性的情况下制造复杂形状成为可能。然而,应用这种技术来取代现有的设计,特别是在流体力学领域,仍然是一个挑战。该研究的目的是评估与传统制造的Pelton涡轮机相比,3D打印的Pelton涡轮机在各种压头下的效率。在南非大学完成了涡轮叶片的设计、制造和测试,目的是取代现有的涡轮。试验分别在0.5 kPa、1 kPa和1.5 kPa压头下进行。结果表明,金属和引水材料的水轮机效率在50%以上,透明材料的水轮机效率在50%以下。对于金属和牵引力,系统转速随压力的增大而增大,而对于透明材料的涡轮,系统转速随压力的增大而减小。
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Performance Analysis of 3D Printed Pelton Wheel Turbine at Various Pressure Heads
The increased usage of 3D printers, has made it possible to fabricate a complex shape without compromising the structural integrity of the component. However, the application of this technology to replace existing design, especially in the area of fluid mechanics, is still a challenge. The aim of the study is to evaluate the efficiency of the 3D printed Pelton turbine wheel at various pressure head as compared to the traditionally fabricated Pelton turbine. The design, fabrication and testing of the turbine blade were performed at University of South Africa, with the aim of replacing the existing turbine wheel. The tests were carried out at 0.5 kPa, 1 kPa and 1.5 kPa pressure heads. The results shows that the efficiency Pelton wheel turbine of metal and draft material are above 50 % and those of clear is below 50 %. The speed of the system increase as the pressure increase for metal and draft, however, for the turbine wheel of clear material it increases and decreases.
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