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首页> 外文期刊>The Canadian Journal of Chemical Engineering >Development of helical coil based fluidic diode pump for liquid pumping
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Development of helical coil based fluidic diode pump for liquid pumping

机译:用于液体泵送的螺旋线圈流体二极管泵的研制

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摘要

The main selection criterion for pumps in reprocessing applications is the absence of any moving parts or the moving parts not having any direct contact with the process fluid. There are different types of fluidic pumps such as vortex diode, reverse flow diode, etc. In this work, a new design of helical coil fluidic pump has been developed and demonstrated. Helical coils are widely used in process industries as heat exchangers, reactors, motionless mixers, etc. It is for the first time that the authors are proposing the use of helical coil as a fluidic pump based on its inherent property of high pressure drop as compared to a straight tube. The main objective of this work is to develop an alternate pumping system for reprocessing applications to replace the conventional air lift pump. The helical coil based fluidic diode pump was made up of SS 304 seamless pipe (pipe inner diameter is 9.5mm) with a 36mm diameter of helical coil and pitch of 14mm. In this work, friction factor for the given helical coil was measured from pressure drop experiments. This information was also useful for understanding the transition of the laminar to turbulent region. In order to propose the operating region, the pumping capacity was measured for the helical coil based fluidic pump at different operating conditions. Experimental results show that the proposed hardware is able to pump up to 54dm(3)/h. Recommendations have been made for proposing an optimum design.
机译:再处理应用中泵的主要选择标准是没有任何移动部件或不与工艺流体直接接触的移动部件。有不同类型的流体泵,如涡流二极管,反向流动二极管等。在这项工作中,已经开发并证明了螺旋线圈流体泵的新设计。螺旋线圈广泛用于工艺行业,作为热交换器,反应堆,一动动混合器等。作者首次提出了基于其在高压下降的固有性能的流体泵的使用,这是第一次提出使用螺旋线圈的使用直线管。这项工作的主要目的是开发一种用于再处理应用的替代泵送系统,以更换传统的空气升降泵。基于螺旋线圈的流体二极管泵由SS 304无缝管(管道内径为9.5mm),直径为36mm,螺旋线圈和14mm的间距。在这项工作中,从压降实验中测量给定螺旋线圈的摩擦系数。该信息也可用于理解层流到湍流区域的过渡。为了提出操作区域,在不同的操作条件下针对螺旋线圈的流体泵测量泵送能力。实验结果表明,所提出的硬件能够泵浦高达54dm(3)/ h。建议提出了最佳设计。

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