首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >ASSESSMENT OF PROTOTYPIC AND CLOSED LOOP OPERATION DURING PULSE JET MIXER TESTS WITH NON-COHESIVE SOLIDS TO DEVELOP SCALE-UP RELATIONSHIPS
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ASSESSMENT OF PROTOTYPIC AND CLOSED LOOP OPERATION DURING PULSE JET MIXER TESTS WITH NON-COHESIVE SOLIDS TO DEVELOP SCALE-UP RELATIONSHIPS

机译:使用非粘性固体进行脉冲射流混合器测试期间的原型和闭环操作评估,以扩大规模关系

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The Hanford Waste Treatment Plant (WTP) in Richland, Washington is applying pulse jet mixer (PJM) technology for slurry mixing applications requiring solids mixing, solids suspension, fluid blending, and release of gases generated by radiolysis and thermal processes. Experiments were conducted to investigate pulse jet mixer performance in two different experimental configurations: one using intermittent flow through the pulse tube with non-prototypic refill and the other with prototypic reciprocating flow. Models developed to predict the critical suspension velocity (U_(Cs)), cloud height, and concentration based on the intermittent flow data. This model under predicted the U_(cs) condition for data obtained using prototypic reciprocating flow. When an adjustment to the settling velocity was incorporated into the model to address the effects of intermittent flow, the resulting reciprocating flow model more closely matched the experimental data.
机译:华盛顿州里奇兰市的汉福德废物处理厂(WTP)正在将脉冲喷射混合器(PJM)技术应用于泥浆混合应用,这些应用需要进行固体混合,固体悬浮,流体混合以及释放由放射分解和热过程产生的气体。进行了实验以研究脉冲喷射混合器在两种不同的实验配置中的性能:一种是使用间歇性流过脉冲管的非原型填充,另一种是使用原型往复流的。基于间歇流量数据开发的模型可预测临界悬浮速度(U_(Cs)),云层高度和浓度。对于使用原型往复流获得的数据,该模型在预测U_(cs)条件的情况下。当对模型中的沉降速度进行调整以解决间歇流动的影响时,所得的往复流动模型与实验数据更加匹配。

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