Optimization of Tesla turbine using Computational Fluid Dynamics approach

Tan Wee Choon, A. A. Rahman, Foo Shy Jer, Lim Eng Aik
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引用次数: 24

Abstract

A Tesla turbine is developed in order to utilize the potential energy within household water supply and convert to electricity energy without significant head loss. Pressure within the water supply having higher potential energy compared to the energy needed to reach the reservoir tank. This extra potential energy can be utilized and convert to useful energy before it being waste after reach reservoir tank. The development of Tesla turbine is carried out to determine disc size, disk gap and number of disc base on theoretical calculation of Tesla turbine. Optimization is done by using Computational Fluid Dynamics (CFD) software package. Actual performance analysis for prototype based on RPM and torque also conducted. After the optimization, we observed that the Tesla turbine design yields torque of 0.0330N.m with an efficiency of 10.7% .
基于计算流体动力学方法的特斯拉涡轮优化
特斯拉水轮机是为了利用家庭供水中的潜在能量,并在不显着的水头损失的情况下转换为电能而开发的。与到达蓄水池所需的能量相比,供水系统内的压力具有更高的势能。这些多余的势能在到达蓄水池后不被浪费,可以被利用并转化为有用的能量。在对特斯拉涡轮进行理论计算的基础上,进行了特斯拉涡轮的研制,确定了叶轮尺寸、叶轮间隙和叶轮数量。利用计算流体动力学(CFD)软件包进行优化。并对样机进行了基于转速和转矩的实际性能分析。优化后,我们观察到特斯拉涡轮设计产生的扭矩为0.0330N。M,效率为10.7%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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