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Development of a two-stage Lau-Wan Wankel pump/mixer

机译:开发两级Lau-Wan Wankel泵/混合器

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摘要

A two-stage Wankel pump/mixer device has been designed and prototyped as part of a final-year undergraduate project. Based on the concept of the Wankel rotary engine, the device features a 'two-apex' rotor instead of the conventional 'three-apex' rotor. The novelty of the device addresses a unique axis of rotation for the rotor, driven by a crankshaft. In particular, in order for the motion of the rotor to exhibit a trajectory to consistency with an epitrochoid, the rotational motion is guided by the linear motion of a pin sliding along a groove within the rotor; this novel linear-to-rotational motion approach is known as the Lau-Wan design. The feasibility of the Lau-Wan design has been demonstrated in an earlier project. Here, the prototype comprises two Lau-Wan pump/mixers serially connected to form a two-stage system-the aim is to study the effectiveness of the mixing of fluids as the fluids flow from one stage to the other when both rotors are rotating 'in phase'. A simple drive system was implemented by (a) coupling the two crankshafts using a timing belt and (b) coupling a low-speed motor to one of the two stages using a timing belt. Experiment was conducted to analyze the flow pattern of liquids in both stages using two types of liquid with different colors (and a slight variation in the viscosity). The flow pattern within the chamber of the first stage shows somewhat similar mixing patterns to those predicted by computational fluid models. We note that (I) the extent of drawing the fluid into the chamber, followed by compressing the fluid, depends on the rotor position, (2) laminar flow dominates the flow pattern during the suction and compressive actions of the rotor but micro-turbulence occurs in the regions adjacent to the rotor, (3) when the rotor rotates, the number of laminar layers somewhat increases with time. On the other hand, the second stage appears to be very efficient at drawing one of the two fluids; this may be attributed to the viscosity of the fluids. Within the limitations of the preliminary design, these characteristics suggest that the prototype exhibits a positive displacement pumping action, as well as mixing action.
机译:Wankel泵/混合器设备分两阶段设计和原型化,作为最后一个本科项目的一部分。该设备基于Wankel旋转发动机的概念,具有“两顶点”转子而不是传统的“三顶点”转子。该设备的新颖性解决了由曲轴驱动的转子的独特旋转轴。特别地,为了使转子的运动表现出与摆线一致的轨迹,旋转运动由沿转子内的凹槽滑动的销的线性运动引导。这种新颖的线性旋转运动方法称为Lau-Wan设计。 Lau-Wan设计的可行性已在较早的项目中得到了证明。在此,该原型机包括两个串联的劳万泵/混合器,形成一个两级系统。目的是研究当两个转子都旋转时,流体从一个阶段流向另一个阶段时流体的混合效果。分阶段”。通过(a)使用正时皮带将两个曲轴连接在一起,以及(b)使用正时皮带将低速电动机连接到两级之一上,从而实现了简单的驱动系统。进行了实验,以分析使用两种颜色不同(粘度略有变化)的两种液体在两个阶段中的流动模式。第一级室内的流动模式显示出与计算流体模型预测的混合模式有些相似的混合模式。我们注意到(I)将流体吸入腔室然后进行压缩的程度取决于转子的位置(2)层流在转子的吸入和压缩过程中主导了流型,但微湍流(3)当转子旋转时,层流层的数量随时间增加。另一方面,第二阶段似乎在抽取两种流体中的一种时非常有效。这可能归因于流体的粘度。在初步设计的限制范围内,这些特征表明该原型机表现出正排量的泵送作用以及混合作用。

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  • 作者单位

    School of Mechanical & Systems Engineering, Newcastle University, Newcastle Upon Tyne, UK,NUInternational Singapore Pte Ltd, SIT Building @ Nanyang Polytechnic, Singapore;

    School of Mechanical & Systems Engineering, Newcastle University, Newcastle Upon Tyne, UK,NUInternational Singapore Pte Ltd, SIT Building @ Nanyang Polytechnic, Singapore;

    Institute of High Performance Computing, #16-16 Connexis North, Singapore;

    Institute of High Performance Computing, #16-16 Connexis North, Singapore;

    Institute of High Performance Computing, #16-16 Connexis North, Singapore;

    School of Mechanical & Systems Engineering, Newcastle University, Newcastle Upon Tyne, UK;

    School of Mechanical & Systems Engineering, Newcastle University, Newcastle Upon Tyne, UK,NUInternational Singapore Pte Ltd, SIT Building @ Nanyang Polytechnic, Singapore,School of Mechanical & Systems Engineering, Newcastle Upon Tyne, 138632, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laminar flow; micro-turbulence; microfluidics; 3D printing; Reynold number;

    机译:层流微湍流微流体3D打印雷诺数;

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