抄録
The present paper reports an experimental investigation of the effect of nozzle geometry of port fuel injector PFI on exit flow velocity, the stability of primary spray behavior and spray droplet size. Several types of PFI with were tested. The investigation of exit flow velocity and stability (wavelength) of spray structure was performed using an ultra high-speed video camera (max. camera speed 1Mfps) with a long-distance microscope (whole image). The visualized experiments were carried out in a closed chamber at the atmospheric pressure. With back-lighting, the time-series images of the spray behavior were obtained. Using ultra high-speed camera with long-distance microscope and Barlow lens, droplet diameter could be visualized with high temporal resolution (magnified image). Experimental results of average exit velocity compared with NOZZLE FLOW model where experimental results of stability and droplet diameter compared with KH-RT breakup model. Experimental investigation showed that exit velocity, droplet diameter and stability (wavelength) influence by nozzle geometry.
本文言語 | English |
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ページ | 429-436 |
ページ数 | 8 |
出版ステータス | Published - 12月 1 2008 |
イベント | 7th International Conference on Modeling and Diagnostics for Advanced Engine Systems, COMODIA 2008 - Sapporo 継続期間: 7月 28 2008 → 7月 31 2008 |
Other
Other | 7th International Conference on Modeling and Diagnostics for Advanced Engine Systems, COMODIA 2008 |
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国/地域 | Japan |
City | Sapporo |
Period | 7/28/08 → 7/31/08 |
ASJC Scopus subject areas
- 自動車工学
- 制御およびシステム工学
- モデリングとシミュレーション