Prediction of unsteady, internal turbulent cavitating flow using dynamic cavitation model

被引:13
|
作者
Ullas, P. K. [1 ]
Chatterjee, Dhiman [1 ]
Vengadesan, S. [2 ]
机构
[1] Indian Inst Technol Madras, Dept Mech Engn, Chennai, Tamil Nadu, India
[2] Indian Inst Technol Madras, Dept Appl Mech, Chennai, Tamil Nadu, India
关键词
Cavitation; Detached eddy simulation (DES); Dynamic cavitation model (DCM); Schnerr and Sauer (SS) model; Unsteady Reynolds-averaged Navier-Stokes (URANS); DETACHED-EDDY SIMULATION; NUMERICAL-SIMULATION; REYNOLDS-NUMBER; VALIDATION; DIESEL; RANS;
D O I
10.1108/HFF-09-2021-0600
中图分类号
O414.1 [热力学];
学科分类号
摘要
Purpose Understanding the interaction of turbulence and cavitation is an essential step towards better controlling the cavitation phenomenon. The purpose of this paper is to bring out the efficacy of different modelling approaches to predict turbulence and cavitation-induced phase changes. Design/methodology/approach This paper compares the dynamic cavitation (DCM) and Schnerr-Sauer models. Also, the effects of different modelling methods for turbulence, unsteady Reynolds-averaged Navier-Stokes (URANS) and detached eddy simulations (DES) are also brought out. Numerical predictions of internal flow through a venturi are compared with experimental results from the literature. Findings The improved predictive capability of cavitating structures by DCM is brought out clearly. The temporal variation of the cavity size and velocity illustrates the involvement of re-entrant jet in cavity shedding. From the vapour fraction contours and the attached cavity length, it is found that the formation of the re-entrant jet is stronger in DES results compared with that by URANS. Variation of pressure, velocity, void fraction and the mass transfer rate at cavity shedding and collapse regions are presented. Wavelet analysis is used to capture the shedding frequency and also the corresponding occurrence of features of cavity collapse. Originality/value Based on the performance, computational time and resource requirements, this paper shows that the combination of DES and DCM is the most suitable option for predicting turbulent-cavitating flows.
引用
收藏
页码:3210 / 3232
页数:23
相关论文
共 50 条
  • [21] Unsteady Numerical Simulation of Cavitating Turbulent Flow Around a Highly Skewed Model Marine Propeller
    Ji, Bin
    Luo, Xianwu
    Wang, Xin
    Peng, Xiaoxing
    Wu, Yulin
    Xu, Hongyuan
    JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 2011, 133 (01):
  • [22] Multiscale flow structure prediction in unsteady cavitating flow around the hydrofoil
    Yang, Dengfeng
    Chen, Hongxun
    Ma, Zheng
    PHYSICS OF FLUIDS, 2025, 37 (02)
  • [23] Numerical study of unsteady cavitating turbulent flow in a tubular turbine runner
    Zhang, Hong-Ming
    Zhang, Li-Xiang
    PROCEEDINGS OF THE 2015 INTERNATIONAL CONFERENCE ON MECHANICS AND MECHATRONICS (ICMM 2015), 2016, : 211 - 218
  • [24] Unsteady simulation of cavitating turbulent flow for low head Francis turbine
    Gohil, Pankaj P.
    Saini, R. P.
    29TH IAHR SYMPOSIUM ON HYDRAULIC MACHINERY AND SYSTEMS, 2019, 240
  • [25] Study of Quantitative Numerical Prediction of Cavitation Erosion in Cavitating Flow
    Ochiai, Naoya
    Iga, Yuka
    Nohmi, Motohiko
    Ikohagi, Toshiaki
    JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 2013, 135 (01):
  • [26] Unsteady prediction of cavitating flow around a three dimensional hydrofoil by using a modified RNG k-ε model
    Ahn, Soo-Hwang
    Xiao, Yexiang
    Wang, Zhengwei
    Luo, Yongyao
    Fan, Honggang
    OCEAN ENGINEERING, 2018, 158 : 275 - 285
  • [27] Advance in cavitation model for numerical simulation of cavitating flow
    Wei, Ying-Jie
    Cao, Wei
    Wang, Cong
    Zhang, Jia-Zhong
    Wei, Xi-Bin
    Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology, 2007, 39 (SUPPL. 1): : 191 - 197
  • [28] A revised cavitation model for cryogenic cavitating flow computations
    Shi, S. G.
    Wu, Q.
    Wang, G. Y.
    26TH IAHR SYMPOSIUM ON HYDRAULIC MACHINERY AND SYSTEMS, PTS 1-7, 2013, 15
  • [29] Numerical simulation of unsteady cavitating turbulent flow in the whole flow passage of a Kaplan turbine
    Department of Mechanical and Electronic Engineering, Shandong University of Science and Technology, Qingdao 266510, China
    不详
    Jixie Gongcheng Xuebao, 2006, 6 (211-216):
  • [30] Applications of a curvature correction turbulent model for computations of unsteady cavitating flows
    Zhao, Y.
    Wang, G. Y.
    Huang, B.
    Hu, C. L.
    INTERNATIONAL SYMPOSIUM OF CAVITATION AND MULTIPHASE FLOW (ISCM 2014), PTS 1-6, 2015, 72