Theory Analysis and CFD Simulation of the Pressure Wave Generator

In a pressure wave generator mainly consisting of a stator and a rotor with several valve blocks, pressure waves are generated by the continuous shear perturbation of fluids. In this paper, theory analysis of pressure wave generated in water hammer principle was conducted. Then a simplified CFD mode...

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Main Authors: B. Yang, J. Deng, K. Liu, F. Ye
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2017-10-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/131
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spelling doaj-ea5121576ff640338478b3cfeff2975a2021-02-17T21:26:54ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162017-10-016110.3303/CET1761078Theory Analysis and CFD Simulation of the Pressure Wave Generator B. YangJ. DengK. LiuF. YeIn a pressure wave generator mainly consisting of a stator and a rotor with several valve blocks, pressure waves are generated by the continuous shear perturbation of fluids. In this paper, theory analysis of pressure wave generated in water hammer principle was conducted. Then a simplified CFD model of a pressure wave generator connecting the upstream and downstream pipes was established, and the grid and the time step independence tests were carried out. Generating process of controllable pressure waves in pipe flows was simulated, and the frequency and amplitude characteristics were obtained. The results suggest that pressure waves in upstream and downstream pipes have the similar shapes of approximate sinusoidal waveform and opposite phase. Pressure is inversely proportional to the first order derivative of x-velocity at a certain position, which is in good agreement with theoretical analysis; pressure wave amplitude increases with an increment of the rotational frequency of the rotor at the beginning of the pressure wave generator operation, but reaches the maximum amplitude in an optimal frequency when the generator is in stable operation, which means there exists a transition process for the generator. The critical frequency related to the first characteristics time can be applied to avoid the waveform distortion. https://www.cetjournal.it/index.php/cet/article/view/131
collection DOAJ
language English
format Article
sources DOAJ
author B. Yang
J. Deng
K. Liu
F. Ye
spellingShingle B. Yang
J. Deng
K. Liu
F. Ye
Theory Analysis and CFD Simulation of the Pressure Wave Generator
Chemical Engineering Transactions
author_facet B. Yang
J. Deng
K. Liu
F. Ye
author_sort B. Yang
title Theory Analysis and CFD Simulation of the Pressure Wave Generator
title_short Theory Analysis and CFD Simulation of the Pressure Wave Generator
title_full Theory Analysis and CFD Simulation of the Pressure Wave Generator
title_fullStr Theory Analysis and CFD Simulation of the Pressure Wave Generator
title_full_unstemmed Theory Analysis and CFD Simulation of the Pressure Wave Generator
title_sort theory analysis and cfd simulation of the pressure wave generator
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2017-10-01
description In a pressure wave generator mainly consisting of a stator and a rotor with several valve blocks, pressure waves are generated by the continuous shear perturbation of fluids. In this paper, theory analysis of pressure wave generated in water hammer principle was conducted. Then a simplified CFD model of a pressure wave generator connecting the upstream and downstream pipes was established, and the grid and the time step independence tests were carried out. Generating process of controllable pressure waves in pipe flows was simulated, and the frequency and amplitude characteristics were obtained. The results suggest that pressure waves in upstream and downstream pipes have the similar shapes of approximate sinusoidal waveform and opposite phase. Pressure is inversely proportional to the first order derivative of x-velocity at a certain position, which is in good agreement with theoretical analysis; pressure wave amplitude increases with an increment of the rotational frequency of the rotor at the beginning of the pressure wave generator operation, but reaches the maximum amplitude in an optimal frequency when the generator is in stable operation, which means there exists a transition process for the generator. The critical frequency related to the first characteristics time can be applied to avoid the waveform distortion.
url https://www.cetjournal.it/index.php/cet/article/view/131
work_keys_str_mv AT byang theoryanalysisandcfdsimulationofthepressurewavegenerator
AT jdeng theoryanalysisandcfdsimulationofthepressurewavegenerator
AT kliu theoryanalysisandcfdsimulationofthepressurewavegenerator
AT fye theoryanalysisandcfdsimulationofthepressurewavegenerator
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