An Experimental Study on the Jet Pressure Performance of Organ–Helmholtz (O-H), Self-Excited Oscillating Nozzles
To make a better application of the self-excited oscillation jet, a compound organ−Helmholtz oscillation nozzle (OH nozzle) was designed to generate better pulse effects in the present study. The effects of geometric parameters on pressure characteristics of self-excited oscillation jets w...
Main Authors: | , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
MDPI AG
2020-01-01
|
Series: | Energies |
Subjects: | |
Online Access: | https://www.mdpi.com/1996-1073/13/2/367 |
id |
doaj-77d22d39601a450fbf901f326af2dea7 |
---|---|
record_format |
Article |
spelling |
doaj-77d22d39601a450fbf901f326af2dea72020-11-25T01:10:11ZengMDPI AGEnergies1996-10732020-01-0113236710.3390/en13020367en13020367An Experimental Study on the Jet Pressure Performance of Organ–Helmholtz (O-H), Self-Excited Oscillating NozzlesXiaochuan Wang0Yueqin Li1Yi Hu2Xiaolong Ding3Meijing Xiang4Deng Li5Hubei Key Laboratory of Waterjet Theory and New Technology, Wuhan University, Wuhan 430072, ChinaHubei Key Laboratory of Waterjet Theory and New Technology, Wuhan University, Wuhan 430072, ChinaHubei Key Laboratory of Waterjet Theory and New Technology, Wuhan University, Wuhan 430072, ChinaHubei Key Laboratory of Waterjet Theory and New Technology, Wuhan University, Wuhan 430072, ChinaHubei Key Laboratory of Waterjet Theory and New Technology, Wuhan University, Wuhan 430072, ChinaHubei Key Laboratory of Waterjet Theory and New Technology, Wuhan University, Wuhan 430072, ChinaTo make a better application of the self-excited oscillation jet, a compound organ−Helmholtz oscillation nozzle (OH nozzle) was designed to generate better pulse effects in the present study. The effects of geometric parameters on pressure characteristics of self-excited oscillation jets were investigated experimentally. The geometric parameters of OH nozzles were determined based on the design principle of the organ-pipe and Helmholtz nozzles. Various types of OH nozzles were tested to obtain the relationship between oscillation pressure and geometric parameters. Experimental results showed that some structural parameters are sensitive to the pump pressure, while others are not. The optimum geometric optimum parameters were obtained based on experimental results. The peak pressure and pressure pulsation amplitude are closely related to the target distance. The peak pressure decreases sharply with target distance at first and decreases with a further increase of the target distance. The peak pressure becomes stable beyond a certain range of target distance. With the increase of the target distance, the pressure pulsation amplitude increases at first and then decreases. The optimum target distance was determined based on experimental results to achieve better pulsation performance and has a value of 20 mm in the present study.https://www.mdpi.com/1996-1073/13/2/367self-excited oscillation jetorgan–helmholtz nozzlepulse waterjetpressure pulsation amplitude |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xiaochuan Wang Yueqin Li Yi Hu Xiaolong Ding Meijing Xiang Deng Li |
spellingShingle |
Xiaochuan Wang Yueqin Li Yi Hu Xiaolong Ding Meijing Xiang Deng Li An Experimental Study on the Jet Pressure Performance of Organ–Helmholtz (O-H), Self-Excited Oscillating Nozzles Energies self-excited oscillation jet organ–helmholtz nozzle pulse waterjet pressure pulsation amplitude |
author_facet |
Xiaochuan Wang Yueqin Li Yi Hu Xiaolong Ding Meijing Xiang Deng Li |
author_sort |
Xiaochuan Wang |
title |
An Experimental Study on the Jet Pressure Performance of Organ–Helmholtz (O-H), Self-Excited Oscillating Nozzles |
title_short |
An Experimental Study on the Jet Pressure Performance of Organ–Helmholtz (O-H), Self-Excited Oscillating Nozzles |
title_full |
An Experimental Study on the Jet Pressure Performance of Organ–Helmholtz (O-H), Self-Excited Oscillating Nozzles |
title_fullStr |
An Experimental Study on the Jet Pressure Performance of Organ–Helmholtz (O-H), Self-Excited Oscillating Nozzles |
title_full_unstemmed |
An Experimental Study on the Jet Pressure Performance of Organ–Helmholtz (O-H), Self-Excited Oscillating Nozzles |
title_sort |
experimental study on the jet pressure performance of organ–helmholtz (o-h), self-excited oscillating nozzles |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2020-01-01 |
description |
To make a better application of the self-excited oscillation jet, a compound organ−Helmholtz oscillation nozzle (OH nozzle) was designed to generate better pulse effects in the present study. The effects of geometric parameters on pressure characteristics of self-excited oscillation jets were investigated experimentally. The geometric parameters of OH nozzles were determined based on the design principle of the organ-pipe and Helmholtz nozzles. Various types of OH nozzles were tested to obtain the relationship between oscillation pressure and geometric parameters. Experimental results showed that some structural parameters are sensitive to the pump pressure, while others are not. The optimum geometric optimum parameters were obtained based on experimental results. The peak pressure and pressure pulsation amplitude are closely related to the target distance. The peak pressure decreases sharply with target distance at first and decreases with a further increase of the target distance. The peak pressure becomes stable beyond a certain range of target distance. With the increase of the target distance, the pressure pulsation amplitude increases at first and then decreases. The optimum target distance was determined based on experimental results to achieve better pulsation performance and has a value of 20 mm in the present study. |
topic |
self-excited oscillation jet organ–helmholtz nozzle pulse waterjet pressure pulsation amplitude |
url |
https://www.mdpi.com/1996-1073/13/2/367 |
work_keys_str_mv |
AT xiaochuanwang anexperimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles AT yueqinli anexperimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles AT yihu anexperimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles AT xiaolongding anexperimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles AT meijingxiang anexperimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles AT dengli anexperimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles AT xiaochuanwang experimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles AT yueqinli experimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles AT yihu experimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles AT xiaolongding experimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles AT meijingxiang experimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles AT dengli experimentalstudyonthejetpressureperformanceoforganhelmholtzohselfexcitedoscillatingnozzles |
_version_ |
1725176292727324672 |