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首页> 外文期刊>Journal of Mechanical Science and Technology >Solid-liquid mixture flow through a slim hole annulus with rotating inner cylinder
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Solid-liquid mixture flow through a slim hole annulus with rotating inner cylinder

机译:固液混合物流经带有旋转内筒的细孔环

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An experimental study was conducted to study solid-liquid mixture upward hydraulic transport of solid particles in vertical and inclined annuli with rotating inner cylinder. Lift forces acting on a fluidized particle play a central role in many important applications, such as the removal of drill cuttings in horizontal drill holes, sand transport in fractured reservoirs and sediment transport, etc. Annular fluid velocities varied from 0.4 m/s to 1.2 m/s. Effect of annulus inclination and drill pipe rotation on the carrying capacity of drilling fluid, particle rising velocity, and pressure drop in the slim hole annulus have been measured for fully developed flows of water and of aqueous solutions of sodium carboxymethyl cellulose (CMC) and bentonite, respectively. For higher particle feed concentration, the hydraulic pressure drop of mixture flow increases due to the friction between the wall and solids or among solids.
机译:进行了实验研究,研究了旋转内筒时固体颗粒在垂直和倾斜环空中的固液混合物向上水力输送。作用在流化颗粒上的升力在许多重要应用中起着中心作用,例如在水平钻孔中去除钻屑,在裂缝性储层中运沙和沉积物运移等。环形流体速度从0.4 m / s到1.2不等多发性硬化症。对于水和羧甲基纤维素钠(CMC)和膨润土的充分展开的流动,已测量了环面倾角和钻杆旋转对钻井液的承载能力,颗粒上升速度和细孔环面压力降的影响。 , 分别。对于较高的颗粒进料浓度,由于壁与固体之间或固体之间的摩擦,混合物流的液压降会增加。

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