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ANALYSIS OF PROPELLER DESIGN METHODS AND VALIDATION WITH THE CFD COMPUTATION OF A PROPELLER-PUMP

机译:螺旋桨泵的CFD计算螺旋桨设计方法及验证

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There is a large variety of axial propellers available, ranging from very small devices with only millimeters in diameter to ship propellers being several meters in size. Also they are applicable in several different ways, from low pressure propellers when actually used as fans or high pressure differences when used for propulsion purposes. Several theories have been developed to calculate and predict propeller performance. The basic theory is the linear momentum theory which takes only the axial motion into account. The theory can be refined taking the rotational motion and hence the angular momentum into account and also segmenting the propeller into several blade elements, to which classical airfoil theory can be applied. However, common literature does not include any precise verification of these theories. The present work shows with CFD computations the validation and hence accuracy of the blade element theory and its predecessors on a specific axial machine, namely the blood assist Reitan catheter propeller -pump. The propeller - pump is evaluated in a large operational range, using a commercial CFD code. The theory is then applied to the CFD results calculating the stream tube, in which all the necessary parameters, like interference factors, are evaluated. Those will deliver the machine characteristics thrust, torque and efficiency according to these theories. Comparison of this data to the CFD values shows good agreement, especially when segmenting the propeller and therefore using multiple stream tubes. Thus, the validity of these theories and its range of applicability was verified showing in detail how these theories can be employed as reliable design tools coupled with CFD verification.
机译:轴向螺旋桨种类繁多,从直径仅几毫米的非常小的设备到几米长的船用螺旋桨,一应俱全。它们也有几种不同的应用方式,从实际上用作风扇的低压螺旋桨到用于推进目的的高压差。已经开发了几种理论来计算和预测螺旋桨性能。基本理论是线性动量理论,它仅考虑轴向运动。可以在考虑旋转运动并因此考虑到角动量的情况下完善该理论,并且还可以将螺旋桨分成几个叶片元件,经典翼型理论可以应用到这些叶片元件中。但是,普通文献不包括对这些理论的任何精确验证。本工作通过CFD计算显示了在特定的轴向机器(即血液辅助Reitan导管推进器-泵)上的叶片元件理论及其前身的有效性以及准确性。使用商业CFD代码对螺旋桨-泵在较大的运行范围内进行评估。然后将该理论应用于计算流管的CFD结果中,在其中评估所有必要的参数(例如干扰因子)。这些将根据这些理论提供机器特性推力,扭矩和效率。将该数据与CFD值进行比较显示出很好的一致性,尤其是在对螺旋桨进行分段并因此使用多个流管时。因此,这些理论的有效性及其适用范围得到了验证,详细显示了这些理论如何与CFD验证一起用作可靠的设计工具。

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