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首页> 外文期刊>Chemical Engineering Science >A mechanistic model to determine the critical flow velocity required to initiate the movement of spherical bed particles in inclined channels [Review]
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A mechanistic model to determine the critical flow velocity required to initiate the movement of spherical bed particles in inclined channels [Review]

机译:一种机制模型,用于确定启动球形床颗粒在倾斜通道中运动所需的临界流速[综述]

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This study presents a mechanistic model that predicts the critical velocity, which is required to initiate the movement of solid bed particles. The model is developed by considering fluid flow over a stationary bed of solid particles of uniform thickness, which is resting on an inclined pipe wall. Sets of sand bed critical velocity tests were performed to verify the predictions of the model. An 80 mm flow loop with recirculation facilities was constructed to measure the critical velocities of the sand beds. The tests were carried out by observing the movement of the bed particles in a transparent pipe while regulating the flowrate of the fluid. Water and aqueous solutions of PolyAnoinic Cellulose were used as a test fluid. The critical velocities of four sand beds with different particle size ranges were measured. The model was used to predict the critical velocities of the beds. The model predictions and experimentally measured data show satisfactory agreement. The results also indicated that the critical velocity is influenced by the properties of the fluid, flow parameters, and particle size. (C) 2003 Published by Elsevier Science Ltd. [References: 20]
机译:这项研究提出了一种预测临界速度的机制模型,该速度是启动固体床颗粒运动所必需的。通过考虑在均匀厚度的固体颗粒固定床上的流体流动来开发模型,该固定颗粒固定在倾斜的管壁上。进行了沙床临界速度测试,以验证模型的预测。构造了一个带再循环设施的80毫米流量环,以测量砂床的临界速度。通过观察床颗粒在透明管中的运动同时调节流体的流量来进行测试。聚氨基酸纤维的水和水溶液用作测试流体。测量了具有不同粒径范围的四个沙床的临界速度。该模型用于预测床的临界速度。模型预测和实验测量数据显示令人满意的一致性。结果还表明,临界速度受流体性质,流动参数和粒径的影响。 (C)2003年由Elsevier Science Ltd.出版[参考文献:20]

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