LDV Measurements of Orifice Jet Flows at Low Reynolds Numbers

Measurements of orifice jet flows in oil hydraulic tubes with LDV were carried out in order to clarify the flow structure which causes the peculiar behavior in the pressure recovery previously discovered by some of the present authors. The findings are as follows: with Re around 200, the orifice jet...

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Published inNihon Kikai Gakkai rombunshuu. B hen Vol. 57; no. 534; pp. 508 - 515
Main Authors KAMIYA, Masato, KONISHI, Tadataka, SAKAGUCHI, Tadashi, WASHIO, Seiichi, BABA, Mitsuru
Format Journal Article
LanguageEnglish
Japanese
Published The Japan Society of Mechanical Engineers 1991
Subjects
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ISSN0387-5016
1884-8346
DOI10.1299/kikaib.57.508

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Abstract Measurements of orifice jet flows in oil hydraulic tubes with LDV were carried out in order to clarify the flow structure which causes the peculiar behavior in the pressure recovery previously discovered by some of the present authors. The findings are as follows: with Re around 200, the orifice jet flow starts to become turbulent, exhibiting observable pressure recovery. In a typical turbulent jet flow of a low Reynolds number the axial velocity rapidly decreases downstream, and then gradually increases until it reaches the velocity of the corresponding Poiseuille laminar flow. In this rapid deceleration field, a small percentage of the kinetic energy of the main flow is restored to the static pressure, while most of it is consumed to develop turbulence which becomes most intense at the end of the field. The deceleration field travels noticeably downstream as Re decreases below 1000, which coincides with the movement of the pressure recovering region.
AbstractList Measurements of orifice jet flows in oil hydraulic tubes with LDV were carried out in order to clarify the flow structure which causes the peculiar behavior in the pressure recovery previously discovered by some of the present authors. The findings are as follows: with Re around 200, the orifice jet flow starts to become turbulent, exhibiting observable pressure recovery. In a typical turbulent jet flow of a low Reynolds number the axial velocity rapidly decreases downstream, and then gradually increases until it reaches the velocity of the corresponding Poiseuille laminar flow. In this rapid deceleration field, a small percentage of the kinetic energy of the main flow is restored to the static pressure, while most of it is consumed to develop turbulence which becomes most intense at the end of the field. The deceleration field travels noticeably downstream as Re decreases below 1000, which coincides with the movement of the pressure recovering region.
Measurements of orifice jet flows in oil hydraulic tubes with LDV were carried out. The findings are as follows: with Re around 200, the orifice jet flow starts to become turbulent, exhibiting observable pressure recovery. In a typical turbulent jet flow of a low Reynolds number the axial velocity rapidly decreases downstream, and then gradually increases until it reaches the velocity of the corresponding Poiseuille laminar flow. The deceleration field travels noticeably downstream as Re decreases below 1000, which coincides with the movement of the pressure recovering region.
Author KONISHI, Tadataka
KAMIYA, Masato
SAKAGUCHI, Tadashi
WASHIO, Seiichi
BABA, Mitsuru
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  fullname: BABA, Mitsuru
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References 藤井,ターボ機械,6-2(1978),88.
鷲尾•ほか5名,機論,51-469,B(1985),2297.
谷,流れ学,(1973),153,岩波全書.
LDVの基礎と応用,(1980),34,日刊工業新聞社
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Snippet Measurements of orifice jet flows in oil hydraulic tubes with LDV were carried out in order to clarify the flow structure which causes the peculiar behavior in...
Measurements of orifice jet flows in oil hydraulic tubes with LDV were carried out. The findings are as follows: with Re around 200, the orifice jet flow...
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StartPage 508
SubjectTerms flow measurement
jets
laminar flow
Oil Hydraulic Tube
pressure
turbulent flow
Title LDV Measurements of Orifice Jet Flows at Low Reynolds Numbers
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