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Experimental set-up of motionless hydraulic mixer and analysis of hydraulic mixing

机译:静止式液压搅拌机的实验装置及液压搅拌分析

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This contribution presents a mixing process and device which does not contain any moving parts touching the mixing liquid. The process called hydraulic mixing is carried on in a hydraulic mixer which utilizes alternate changes of pressure in a unit caused by adequate in- and out-flows of a gas. The idea of hydraulic mixer (HM) was born during the HAZOP analysis applied at the initial step of the process design. Therefore, the drawn down concept of inherently safer HM was built in laboratory and it led to experimental verification. The performed set of experiments varied in volume of mixed liquid, dimension of device and location of dye injection. The obtained results have shown a feasibility of mixing liquid in the apparatus in which local values of Reynolds number are generally in the laminar regime but if it goes to turbulent (i.e. in the clearance and inner compartment) never reach 11,000. During the carried out experiments various physical phenomena have been observed, such as waving and formation concave convex structures at liquid interface. Although, hydrodynamic description of the hydraulic mixing with use of modified Reynolds number has been proposed, the description and explanation of obtained results pose difficulties, raised many still open questions and provide challenges for future work. (C) 2015 Elsevier B.V. All rights reserved.
机译:该贡献提出了一种混合过程和装置,其不包含任何接触混合液体的运动部件。称为液压混合的过程是在液压混合器中进行的,该混合器利用由气体的适当流入和流出引起的单元压力的交替变化。液压混合器(HM)的想法是在过程设计的最初阶段进行的HAZOP分析期间诞生的。因此,在实验室中建立了本质上更安全的HM的设计概念,并进行了实验验证。进行的一组实验在混合液体的体积,装置的尺寸和染料注入的位置方面有所不同。所获得的结果表明在设备中混合液体的可行性,在该设备中,雷诺数的局部值通常处于层流状态,但是如果湍流(即在间隙和内部隔室中)则永远不会达到11,000。在进行的实验中,已经观察到各种物理现象,例如在液体界面处起伏和形成凹凸结构。尽管已经提出了使用修正的雷诺数来进行水力混合的流体力学描述,但是对获得的结果的描述和解释带来了困难,提出了许多尚待解决的问题,并为以后的工作提出了挑战。 (C)2015 Elsevier B.V.保留所有权利。

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