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Optimization of solid circulation rate in compartmented fluidized bed gasifier for power generation

机译:间歇式流化床气化炉发电中固体循环速率的优化

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摘要

The present paper reports the optimization of solid circulation rate (SCR) in Compartmented Fluidized Bed Gasifier (CFBG), an indirectly heated fluidized bed that incorporates two sets of v-valves and risers to control the solid circulation across the two compartments, i.e. combustor and gasifier of a pilot plant scale (the height and ID are 1.8m and 0.66m respectively). Sand was used as inert fluidized by air. Four operating variables were studied i.e. bed height, riser, v-valve and main bed flowrate. Based on 2 4 full factorial design of experiment in Yates\u27 algorithm, at confidence level ≥95%, ANOVA analysis has revealed six important effects. The steepest ascent method was applied on linear regression generated from these effects to design the subsequent optimization experiments. The optimum values of SCR have been estimated for both low and high bed level at specific operating parameters.
机译:本论文报告了隔室流化床气化炉(CFBG)中的固体循环速率(SCR)的优化,CFBG是一种间接加热的流化床,其中包括两组v型阀和立管,以控制两个燃烧室(即燃烧室和中试规模的气化炉(高度和内径分别为1.8m和0.66m)。沙子用作惰性物质,通过空气流化。研究了四个操作变量,即床高,立管,v阀和主床流速。根据Yates \ u27算法的2 4全因子设计实验,在置信度≥95%的情况下,ANOVA分析显示出六个重要影响。将最陡峭的上升方法应用于由这些效应产生的线性回归,以设计后续的优化实验。在特定的运行参数下,对于低床位和高床位,都已估算出SCR的最佳值。

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