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首页> 外文期刊>AIChE Journal >Bubble Formation in High-Pressure Liquid-Solid Suspensions with Plenum Pressure Fluctuation
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Bubble Formation in High-Pressure Liquid-Solid Suspensions with Plenum Pressure Fluctuation

机译:高压下液固悬浮液中气泡压力波动的气泡形成

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The behavior of bubble formation from a single orifice in a nonaqueous liquid and a liquid-solid suspension with pressure fluctuations in the gas chamber(plenum region) is studied at high pressures(up to 8.3 MPa). An analytical model is developed to actount fro the initial bubble size in liquid-solid suspensions at high pressures. The model takes into condsideration various forces induced by particles, such as suspension inertial takes into consideration various forces induced by particles, such as suspension inertial force. Both experiments and model predictions indicate that the initial bubble size in the suspension is generally larger than that in the liquid, and that it initial bubble size in the suspension is generally larger than that in the liquid, and that it increases with an increase in the solids concentration. The system pressure has a significant effect on the initial bubble size in liquids or liquid-solid suspensions when bubbles are formed under variable gas flow-rate conditions, and a negligible effect under constant gas flow-rat conditions. This model can reasonably describe the initial buble sizes under high-pressure conditions measured experimentally in this study and those reported in the literature.
机译:研究了在高压(高达8.3 MPa)下,在非水液体中单个孔口和气室(增压区)中压力波动引起的液固悬浮物形成气泡的行为。建立了一种分析模型,以在高压下作用于液固悬浮液中的初始气泡大小。该模型考虑了由颗粒引起的各种力,例如悬浮惯性,并考虑了由颗粒引起的各种力,例如悬浮惯性。实验和模型预测均表明,悬浮液中的初始气泡大小通常大于液体中的气泡大小,并且悬浮液中的初始气泡大小通常大于液体中的气泡大小,并且随着气泡的增加而增加。固体浓度。当在可变的气体流速条件下形成气泡时,系统压力对液体或液-固悬浮液中的初始气泡大小具有显着影响,而在恒定的气体流量比条件下,系统压力对影响微不足道。该模型可以合理地描述在这项研究中实验测量的和在文献中报道的那些条件下,在高压条件下的初始气泡大小。

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