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Optimization of Nozzle Number,Nozzle Diameter and Number of Bucket of Pelton Turbine using Computational Fluid Dynamics and Taguchi Methods

机译:利用计算流体动力学和塔努奇方法优化喷嘴编号,喷嘴直径和桶涡轮机数量

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Along with the depletion of fossil fuel reserves in Indonesia,water resources can be used as an alternative source of energy.Pelton turbines are one type of water turbine that can be used.However,Pelton turbines still have weaknesses in terms of determining the optimal number of buckets and nozzles.This study aims to optimize the experimental variations in the number of buckets(Nb),the diameter of the nozzle(Dj),and the number of nozzles(TV))on the efficiency of the Pelton Turbine.The number of buckets was varied namely 24 and 27 pieces,nozzle diameter 5.5 mm and 7 mm,and number of nozzles using a single nozzle and double nozzle with horizontal direction.The research design began with Design of Experiment(DoE)using Taguchi method in Minitab 18.0.The next step was to calculate and then designed turbine using Autodesk Inventor 2016.The turbine design was then simulated using AN SYS Fluent 17.0 Workbench.The calculation of the largest efficiency using the number of 27 buckets double nozzle 5.5 mm producing an efficiency of 64,69%.Based on Taguchi optimization delta result,the most influential variable on the efficiency was the nozzle diameter(M=0.1943).
机译:随着印度尼西亚化石燃料储备的耗尽,水资源可以用作能源的替代来源.Pelton涡轮机是一种可以使用的一种类型的水轮机。但是,佩尔顿涡轮机仍然有缺点,以确定最佳数量铲斗和喷嘴。本研究旨在优化桶(Nb),喷嘴直径(DJ)的实验变化,以及佩尔顿涡轮机的效率的喷嘴(电视)的数量。数量铲斗变化即24和27件,喷嘴直径5.5mm和7mm,以及使用单个喷嘴的喷嘴数量和具有水平方向的双喷嘴。研究设计开始于Minitab的Taguchi方法设计了实验(DOE)18.0 。下一步是使用Autodesk Inventor 2016计算,然后使用Autodesk Inventor设计的涡轮机。然后使用Sys Fluent 17.0工作台模拟涡轮设计。使用27桶双NOZZL的数量计算最大效率的计算E 5.5 mm产生64,69%的效率。基于Taguchi优化增量结果,效率最具影响力的变量是喷嘴直径(m = 0.1943)。

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