首页> 外文会议>ASME/BATH Symposium on Fluid Power and Motion Control >NUMERICAL MODELING OF A HELICAL EXTERNAL GEAR PUMP WITH CONTINUOUS-CONTACT GEAR PROFILE: A COMPARISON BETWEEN A LUMPED-PARAMETER AND A 3D CFD APPROACH OF SIMULATION
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NUMERICAL MODELING OF A HELICAL EXTERNAL GEAR PUMP WITH CONTINUOUS-CONTACT GEAR PROFILE: A COMPARISON BETWEEN A LUMPED-PARAMETER AND A 3D CFD APPROACH OF SIMULATION

机译:连续接触齿轮型螺旋外齿轮泵的数值模型:集体参数与仿真三维CFD方法的比较

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The concept of continuous-contact helical gear pumps (CCHGP) has been proposed and successfully commercialized in the recent past. Thanks to the continuous-contact rotor profile design and to the helical gear structure, this design eliminates the kinematic flow oscillation. This has important implications on the fluid borne noise generation, which is considered as one of the major sources of noise emissions and mechanical vibrations for positive displacement machines. Although the commercial success of the CCHGP concept, there is very little published studies about the underling physics at the basis of the functioning of this type of design. This is mostly due to the complexity of the fluid domain that characterize the functioning of CCHGP units. In this paper, a transient 3D CFD study is conducted for a reference CCHGP unit for high-pressure (up to 200 bar) fluid power applications. The results of the 3D CFD simulation are compared with those given by a lumped-parameter model developed at the Maha Fluid Power Research Center of Purdue University (USA), which was previously validated against experimental results. The results show how with a proper discretization of the fluid domain the CFD simulation approach can be used for the case of helical CCHGP units. Both models provide a good description of the main features of operation of the unit. The lumped parameter model is quicker, thus suitable for fast optimization studies. However, the CFD results not only can be used to support the main assumptions done on the lumped parameter model, they also permit to gain further insight on the operation of the CCHGP unit, particularly with respect to the flow features of the meshing process.
机译:在最近的过去,已经提出并成功地商业化了连续接触螺旋齿轮泵(CCHGP)的概念。由于连续接触式转子型材设计和螺旋齿轮结构,这种设计消除了运动流动振荡。这对流体传播噪声产生具有重要意义,该发电被认为是正排量机的主要噪声排放和机械振动之一。虽然CCHGP概念的商业成功,但在这种类型的设计的运作的基础上,对楼层物理学的出版研究很少。这主要是由于所阐述CCHGP单元的功能的流体域的复杂性。在本文中,对高压(最多200巴)流体电力应用的参考CCHGP单元进行了瞬态3D CFD研究。将3D CFD模拟的结果与由在普渡大学(美国Maha流体电力研究中心(USA)开发的集合参数模型给出的结果,以前验证了实验结果。结果表明,如何使用流体域的适当离散化,CFD仿真方法可用于螺旋CCHGP单元的情况。两种型号都提供了本机操作的主要特征的良好描述。总体参数模型更快,因此适用于快速优化研究。然而,CFD结果不仅可以用于支持在集总参数模型上完成的主要假设,它们还允许进一步了解CCHGP单元的操作,特别是关于网格化过程的流量特征。

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