Effects of nozzle orientation and spacing on flow characteristics of twin rectangular jets

The effect of the nozzle orientation and the nozzle spacing on the flow characteristics of twin rectangular jets were studied experimentally. The nozzle spacing ratio S/de of a rectangular nozzle with an aspect ratio of 2 was varied from 2.75 to 6.875. Two nozzle orientations were tested, i.e., twin...

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Main Authors: Koichi HAYASHIDA, Takahiro KIWATA
Format: Article
Language:Japanese
Published: The Japan Society of Mechanical Engineers 2023-11-01
Series:Nihon Kikai Gakkai ronbunshu
Subjects:
Online Access:https://www.jstage.jst.go.jp/article/transjsme/89/927/89_23-00193/_pdf/-char/en
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author Koichi HAYASHIDA
Takahiro KIWATA
author_facet Koichi HAYASHIDA
Takahiro KIWATA
author_sort Koichi HAYASHIDA
collection DOAJ
description The effect of the nozzle orientation and the nozzle spacing on the flow characteristics of twin rectangular jets were studied experimentally. The nozzle spacing ratio S/de of a rectangular nozzle with an aspect ratio of 2 was varied from 2.75 to 6.875. Two nozzle orientations were tested, i.e., twin nozzles oriented along the minor plane (TwinMinor) and twin nozzles oriented along the major plane (TwinMajor), and the results were compared with a single round jet, a single rectangular jet, and a twin round jet. In each case, the Reynolds number based on the maximum jet velocity and the equivalent diameter was 1.5 × 104. The nozzle orientation has no influence on the flow characteristics of twin rectangular jets along the jet centerline. However, the velocity and turbulence intensity of the twin rectangular jets of TwinMajor increases more than that of TwinMinor near the symmetry line of the twin jets, and the location of the combined point (CP) becomes upstream. The twin rectangular jets with a small nozzle spacing ratio, i.e., S/de = 2.75 merge upstream. The velocity near the jet centerline in downstream becomes relatively higher compared to that with a large spacing ratio. The vortex shedding frequency of the twin rectangular jets depends on the nozzle spacing ratio. The flow characteristics of the twin rectangular jets with a large nozzle spacing ratio, i.e., S/de = 5.5 and 6.875 are similar to the single rectangular jet.
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spelling doaj.art-6b9f92f109374bc8b093e7fbc5b1adc02023-11-28T05:07:41ZjpnThe Japan Society of Mechanical EngineersNihon Kikai Gakkai ronbunshu2187-97612023-11-018992723-0019323-0019310.1299/transjsme.23-00193transjsmeEffects of nozzle orientation and spacing on flow characteristics of twin rectangular jetsKoichi HAYASHIDA0Takahiro KIWATA1Graduate School of Natural Science and Technology, Kanazawa UniversitySchool of Mechanical Engineering, Kanazawa UniversityThe effect of the nozzle orientation and the nozzle spacing on the flow characteristics of twin rectangular jets were studied experimentally. The nozzle spacing ratio S/de of a rectangular nozzle with an aspect ratio of 2 was varied from 2.75 to 6.875. Two nozzle orientations were tested, i.e., twin nozzles oriented along the minor plane (TwinMinor) and twin nozzles oriented along the major plane (TwinMajor), and the results were compared with a single round jet, a single rectangular jet, and a twin round jet. In each case, the Reynolds number based on the maximum jet velocity and the equivalent diameter was 1.5 × 104. The nozzle orientation has no influence on the flow characteristics of twin rectangular jets along the jet centerline. However, the velocity and turbulence intensity of the twin rectangular jets of TwinMajor increases more than that of TwinMinor near the symmetry line of the twin jets, and the location of the combined point (CP) becomes upstream. The twin rectangular jets with a small nozzle spacing ratio, i.e., S/de = 2.75 merge upstream. The velocity near the jet centerline in downstream becomes relatively higher compared to that with a large spacing ratio. The vortex shedding frequency of the twin rectangular jets depends on the nozzle spacing ratio. The flow characteristics of the twin rectangular jets with a large nozzle spacing ratio, i.e., S/de = 5.5 and 6.875 are similar to the single rectangular jet.https://www.jstage.jst.go.jp/article/transjsme/89/927/89_23-00193/_pdf/-char/enrectangular jettwin jetsnozzle orientationnozzle spacingaxis-switchinghot-wire anemometer
spellingShingle Koichi HAYASHIDA
Takahiro KIWATA
Effects of nozzle orientation and spacing on flow characteristics of twin rectangular jets
Nihon Kikai Gakkai ronbunshu
rectangular jet
twin jets
nozzle orientation
nozzle spacing
axis-switching
hot-wire anemometer
title Effects of nozzle orientation and spacing on flow characteristics of twin rectangular jets
title_full Effects of nozzle orientation and spacing on flow characteristics of twin rectangular jets
title_fullStr Effects of nozzle orientation and spacing on flow characteristics of twin rectangular jets
title_full_unstemmed Effects of nozzle orientation and spacing on flow characteristics of twin rectangular jets
title_short Effects of nozzle orientation and spacing on flow characteristics of twin rectangular jets
title_sort effects of nozzle orientation and spacing on flow characteristics of twin rectangular jets
topic rectangular jet
twin jets
nozzle orientation
nozzle spacing
axis-switching
hot-wire anemometer
url https://www.jstage.jst.go.jp/article/transjsme/89/927/89_23-00193/_pdf/-char/en
work_keys_str_mv AT koichihayashida effectsofnozzleorientationandspacingonflowcharacteristicsoftwinrectangularjets
AT takahirokiwata effectsofnozzleorientationandspacingonflowcharacteristicsoftwinrectangularjets