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Experimental investigation of wall pressure and arching behavior under surcharge pressure in mass-flow hoppers

机译:质料斗中附加压力下壁压力和拱形行为的实验研究

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摘要

Based on Jenike's method, only the self-weight of each arch element is involved in the calculation of the arch thickness parameter which leads to the surcharge pressure not being taken into account in determining the critical outlet dimension of a bulk material storage bin. The aim of this study is to investigate the influence of surcharge pressure on wall pressure distribution and arching behavior in mass-flow structures. A method is introduced to measure the hopper wall pressure distribution. The measurements of the wall pressure and critical outlet dimension were conducted under different surcharge pressures and at various filling levels. The experimental results are compared with existing prevailing theories, where the theoretical outlet dimensions demonstrated significant overdesign in terms of low surcharge pressure and reasonable estimates corresponding to high surcharge. The peak wall pressures around the transition area of the bin are smaller than the calculated values, whereas the stresses close to the outlet are larger than the relative theoretical values.
机译:基于Jenike的方法,只有每个拱形元素的自重才参与拱形厚度参数的计算,这导致在确定散装物料存储仓的关键出口尺寸时未考虑附加压力。这项研究的目的是研究附加压力对质量流结构中壁压力分布和拱形行为的影响。介绍了一种测量料斗壁压力分布的方法。壁压力和临界出口尺寸的测量是在不同的附加压力和不同的填充水平下进行的。将实验结果与现有的主流理论进行了比较,在理论上,出口出口的尺寸在较低的附加压力和合理的估计值(对应较高的附加费)方面显示出明显的过度设计。箱体过渡区域周围的峰值壁压力小于计算值,而靠近出口的应力大于相对理论值。

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