首页> 外文会议>ASME Fluids Engineering Division Meeting >EVALUATING TRANSFER AND PUMPING OF SLURRIES FROM PULSED JET MIXED VESSELS
【24h】

EVALUATING TRANSFER AND PUMPING OF SLURRIES FROM PULSED JET MIXED VESSELS

机译:评估脉冲喷射混合血管浆料的转移和泵送

获取原文

摘要

Due to gravity, solids in slurries will settle if density-differences between the solids and liquid are positive (i.e., particle has a negative buoyant force) unless rheological properties and flow conditions are adequate to overcome the gravitational effects. The rate of settling depends on the force balance of the particle, which includes the surface forces associated with fluid rheology. Given the same fluid and solid properties, the larger and more dense particles tend to settle faster. When pumping slurry into a vessel at concentrations precluding hindered settling with insufficient mixing, particle and density distributions can result in preferential settling, creating stratification in the solids concentration within the vessel. For vessels with transfer line inlets located in the lower portion of the tank, the stratified solids concentration may be detrimental to the transfer system performance. Elevated concentrations of solids in the slurry entrained at the inlet to the transfer line can result in the effective viscosity or slurry bulk density exceeding the design limits of the pump. These conditions could result in plugging of the transfer line or onset of cavitation of the pumps because of excessive pressure drop. These conditions can be exacerbated with periodic inlet conditions existing at the transfer line inlet. Periodic conditions can result when vessel mixing is intermittent such as with pulsed jet mixers (PJM). The transfer line inlet conditions are impacted by the periodic nature of the PJM operations with respect to suspension of solids and their transport to the inlet of the transfer line. A scaling approach is presented, and corresponding test requirements are developed for assessing the prevention of plugging the pipeline. Line plugging mechanisms are addressed that exclude plugging due to steady-state high-density slurry entering the transfer line and reducing the net positive suction head available (NPSHA) at the pump inlet to below that required for pump operation. Items considered include the transition to reduced relative flow velocities, such that the critical pipe velocity for solids deposition, U_(cd), is not maintained, and segregation of heavy solids during the transport. The recommended requirements to prevent plugging include: 1. Limits for viscosity and density for entrained slurry to prevent the pressure drop in the pipeline from exceeding pump capacity. 2. Limits for viscosity and density for entrained slurry to prevent the net positive suction head available (NPSHA) from falling below the net positive suction head required (NPSHR) for operating the pump. 3. Transfer line velocity and flow rate requirements to maintain solids in suspension, while avoiding line plugging that results from deposition of solids within the transfer line. This paper describes the development of the scaling and testing requirements to verify that proposed approaches for transfer and pump out are appropriately developed for operational success within the plant operating windows.
机译:由于重力,如果固体和液体之间的密度差是阳性(即,颗粒具有负浮力),则浆液中的固体将沉降,除非流变性质和流动条件足以克服引力效应。沉降速率取决于颗粒的力平衡,其包括与流体流变学相关的表面力。鉴于相同的流体和固体性质,较大且较多的粒料倾向于更快地沉降。当泵入浆料中以浓度的浓度泵入血管时,妨碍混合不充分的混合,颗粒和密度分布可以导致优先沉降,以容器内的固体浓度产生分层。对于位于罐的下部的传输线入口的容器,分层固体浓度可能对转移系统性能有害。在入口处夹带到转印线的浆料中的升高的固体浓度可导致有效的粘度或浆料堆积密度超过泵的设计限制。由于压降过高,这些条件可能导致堵塞泵的传输线或泵的空化发作。这些条件可以加剧在转移线入口处存在的周期性入口条件。当血管混合是间歇性的诸如脉冲喷射混合器(PJM)时,可以使定期条件产生。转移线入口条件受到PJM操作的周期性,相对于固体的悬浮液及其运输到转移线的入口。提出了一种缩放方法,并开发了相应的测试要求,用于评估防止堵塞管道。管线堵塞机制被寻址的是排除堵塞由于稳态高密度浆液进入输送管线和降低在泵入口可用的净正吸入压头(NPSHA)到低于泵操作所需。所考虑的物品包括过渡到减小的相对流速,使得固体沉积的临界管道速度U_(CD),并且在运输过程中的重固体的分离。推荐的防止堵塞的要求包括:1。夹带浆料的粘度和密度限制,以防止管道中的压降超出泵容量。 2.夹带浆料的粘度和密度的限制,以防止净正抽吸头可用(NPSHA)落下所需的净正吸头(NPSHR),用于操作泵。 3.传输线速度和流量要求以保持悬架中的固体,同时避免线堵塞,从转移线内的固体沉积产生。本文介绍了缩放和测试要求的开发,以验证提出的转移和泵送方法是否适当地开发用于工厂操作窗口的操作成功。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号