arrow
返回

Water Hammer Simulation Using Simplified Convolution-Based Unsteady Friction Model

delete2022-10-06
delete13
delete
OA
AI
K
Kamil Urbanowicz *
A
Anton Bergant
M
Michał Stosiak
A
Adam Deptuła
M
Mykola Karpenko
M
Michał Kubrak
A
Apoloniusz Kodura
DOI:10.3390/w14193151delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Omission of frequency-dependent hydraulic resistance (skin friction) during modelling of the water hammer phenomenon is unacceptable. This resistance plays a major role when the transient liquid flow occurs in rigid-walled pipes (steel, copper, etc.). In the literature, there are at least two different modelling approaches to skin friction. The first group consists of models based on instantaneous changes in local and convective velocity derivatives, and the second group are models based on the convolution integral and full history of the flow. To date, more popular models are those from the first group, but their use requires empirical coefficients. The second group is still undervalued, even if based on good theoretical foundations and does not require any empirical coefficients. This is undoubtedly related to the calculation complexity of the convolution integral. In this work, a new improved effective solution of this integral is further validated, which is characterised with the use of a simplified weighting function consisting of just two exponential terms. This approach speeds the numerical calculations of the basic flow parameters (pressure and velocity) significantly. Presented comparisons of calculations using the new procedure with experimental pressure runs show the usefulness of the proposed solution and prove that it maintains sufficient accuracy.
Keyword:
water hammer
hydraulic transients
unsteady friction
convolution-based model
numerical simulation

期刊

W
Water
IF:
3
论文数:
3.2W
被引数:
7.4W

机构

U
University of Ljubljana
学者数:
1.5W
论文数: 1.3W
被引数: 1.7W
W
West Pomeranian University of Technology
学者数:
2.2K
论文数: 2.4K
被引数: 2.4K
O
Opole University of Technology
学者数:
1.1K
论文数: 1.3K
被引数: 1.2K
V
vilnius gediminas technical university
学者数:
2.2K
论文数: 2.1K
被引数: 24
W
Warsaw University of Technology
学者数:
8.3K
论文数: 7.2K
被引数: 5.5K
学者 查看更多机构
引用论文

引用论文

Gamma-irradiation depletes endogenous germ cells and increases donor cell distribution in chimeric chickens
err2010-11-06
err0
PREAI
errKyung Je Park; Seok Jin Kang; Tae Min Kim; Young Mok Lee; Hyung Chul Lee; Gwonhwa Song; Jae Yong Han
err分享
err收藏
X-ray-induced Chromosomal Aberrations and Cell Killing in Somatic and Germ Cells of theScidMouse
err2009-07-03
err0
PREAI
errP.P.W. Van Buul; D.G. De Rooij; I.M. Zandman; M. Grigorova; A. Van Duyn-Goedhart
err分享
err收藏
Laboratory Implementation of an Adaptive Thresholding System for Free-Space Optical Communication Receivers with Signal Dependent Noise自由空间光通信接收机中针对信号依赖性噪声的自适应阈值系统的实验室实现
err
IF0
err2005-01-01
err0
PREAI
errH. R. Burris; C. I. Moore; L. A. Swingen; L. M. Wasiczko; R. Mahon; M. F. Stell; M. R. Suite; W. S. Rabinovich; J. L. Murphy; G. C. Gilbreath; W. J. Scharpf
err分享
err收藏
Development and validation of the stressful life event questionnaire
err2011-02-15
err0
PREAI
errHamidreza Roohafza; Mohammadarash Ramezani; Masoumeh Sadeghi; Maryam Shahnam; Behzad Zolfagari; Nizal Sarafzadegan
err分享
err收藏
Evidence‐based treatments for rosacea based on phenotype approach基于表型方法的玫瑰痤疮循证治疗方法
err2019-07-01
err0
errOAAI
errE.J. Zuuren; Z. Fedorowicz; J. Tan; M.M.D. Linden; B.W.M. Arents; B. Carter; L. Charland
err分享
err收藏
学者 查看更多内容