Numerical Simulation of Atomization in Nozzle Injection Flow
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概要
- 論文の詳細を見る
At the initial stage of injection, the injection flow has not yet broken up and in a range of small atmosphere pressure (16∼500KPa), the tip of the injection flow always forms a shape of mushroom. [1] [2] Moreover, the umbrella of the mushroom is always very big and its root is always very thin, especially when the atmosphere pressure is relatively low (88KPa, or 100mmHg). These phenomena are not known popularly and the reason of mushroom formation is not clear. In this paper, with the MARS method for simulating free surface, analysis of injection flow is practiced. The phenomena are reproduced and the reason is cleared that the formation of the mushroom is induced by the momentum exchange between the injection fuel flow with very high speed and the very complex flow of the air.
- 一般社団法人 日本機械学会の論文
著者
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NARUMIYA Kikuo
Osaka Sangyo University
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HATTORI Hiroshi
Osaka Sangyo University
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FAN Qinyin
Jiangsu University
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GUO Chenhai
Jiangsu University
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TAKAGI Tosimi
Osaka Sangyo University
関連論文
- Analysis of Initial Process of Liquid Injection into Gas
- Numerical Simulation of Atomization in Nozzle Injection Flow