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Parametric study on Oxy hydrogen gas generation and associated energy consumption using Taguchi's design of experiment concept

机译:浅谈实验概念设计的氧气气体生成和相关能耗的参数研究

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Oxy hydrogen gas is used for lighting, heating, welding etc and in recent past as a fuel additive in internal combustion engines. Generation of Oxy hydrogen gas depends upon number of factors like current, molarity, temperature etc. This paper presents parametric study on rate of oxy hydrogen gas generation (RGN) and related energy consumption (EC). Study is divided in two stages. In the first stage, experimentation is carried out using Taguchi's design of experiment concept to identify the significance of each factor on both responses. Regression model is presented to obtain RGN and EC at different levels of selected factors. Current shows its strong significance on both responses and its difficult to interpret contributions of other selected factors. In the second stage, these contributions are investigated at constant current. Optimization is carried out for maximum RGN and minimum EC with response surface methodology. Interaction effects are also studied and commented.
机译:氧气氢气用于照明,加热,焊接等,最近作为内燃机中的燃料添加剂。氧气氢气的产生取决于电流,摩尔性,温度等的因素数量。本文提出了对氧气气体发生率(RGN)和相关能耗(EC)的参数研究。研究分为两个阶段。在第一阶段,使用Taguchi的实验概念设计进行实验,以确定每个因素对两个反应的重要性。提出回归模型以在不同级别的所选因子中获得RGN和EC。目前表明其对对响应的重要意义及其难以解释其他选定因素的贡献。在第二阶段,在恒定电流下调查这些贡献。用响应表面方法进行最大RGN和最小EC进行优化。还研究了互动效应和评论。

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