著者
奥野 航平 松尾 亜紀子
出版者
一般社団法人 日本機械学会
雑誌
日本機械学会論文集 (ISSN:21879761)
巻号頁・発行日
vol.83, no.856, pp.17-00369-17-00369, 2017 (Released:2017-12-25)
参考文献数
20

The numerical analysis on the flight stability of the underwater projectiles are performed using computational fluid dynamics code which consists of gas/liquid phases analysis, 2D calculation method. The nose shape effect on the underwater flight stability is conducted. The ogival nose, the flat nose and the spike nose are used for the nose shapes. The static stability is determined by the direction of pressure on the projectile. The pressure on the flat nose makes projectile stable, although pressure on the ogival nose and the horizontal area of flat nose makes projectile unstable. The spike nose is statically unstable, however it is possible to increase the flight stability by changing the spike radius and the spike length. When the part of projectile gets out of the bubble and contacts with water, the water pressure acts as restoring force, which lead to improve the flight stability. This phenomenon is called ‘Tail slapping effect’. Tail slapping effect works most effectively when only backward of the center of gravity of the projectile contacts with water. The Effects is canceled as the angle of attack increases and the front of the projectile contacts with water. As a result, the improvement of stability due to the tail slapping effect is limited.

言及状況

外部データベース (DOI)

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日本機械学会論文集 Vol. 83(2017) No. 856「水中移動体の先端形状が飛しょう安定性に与える影響に関する数値解析」https://t.co/OvVSrZ4nUF
日本機械学会論文集 Vol. 83(2017) No. 856「水中移動体の先端形状が飛しょう安定性に与える影響に関する数値解析」https://t.co/OvVSrZ4nUF
日本機械学会論文集 Vol. 83(2017) No. 856「水中移動体の先端形状が飛しょう安定性に与える影響に関する数値解析」https://t.co/OvVSrZ4nUF
日本機械学会論文集 Vol. 83(2017) No. 856「水中移動体の先端形状が飛しょう安定性に与える影響に関する数値解析」https://t.co/OvVSrZ4nUF
日本機械学会論文集 Vol. 83(2017) No. 856「水中移動体の先端形状が飛しょう安定性に与える影響に関する数値解析」https://t.co/OvVSrZ4nUF

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