Linear and nonlinear analyses of the porpoising dynamics of high-speed planing craft using full-scale trial data

IF 2.7 4区 工程技术 Q2 ENGINEERING, CIVIL Journal of Marine Science and Technology Pub Date : 2023-11-29 DOI:10.1007/s00773-023-00972-3
Satoru Hamada, Atsuo Maki
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Abstract

Although it is known from previous studies that porpoising in high-speed planing craft is a Hopf bifurcation, this study examined its occurrence and disappearance using the motion model identified from full-scale test data. Herein, we first analyzed the stability of the system linearized near the equilibrium point. From its results, we reconfirmed the knowledge that porpoising occurs when the system becomes unstable in the vicinity of the equilibrium point. We also found that the system became unstable as the thrust or trim angle of the outboard motor decreased. This finding was consistent with the results of a full-scale craft test performed in a previous study. Second, we confirmed that the limit cycle which is a result of the nonlinearity of the system was stable. The two analyses indicate that porpoising corresponds to the supercritical Hopf bifurcation. Furthermore, in the vicinity of the bifurcation point, it was found that stable equilibrium points and stable limit cycles can coexist. Finally, we confirmed this phenomenon in the full-scale test.

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基于全尺寸试验数据的高速刨床船的动态线性和非线性分析
虽然从以往的研究中已经知道高速飞机中的海豚是Hopf分岔,但本研究使用全尺寸试验数据确定的运动模型来研究其发生和消失。本文首先分析了系统在平衡点附近线性化后的稳定性。从其结果中,我们再次确认了当系统在平衡点附近变得不稳定时发生海豚化的知识。我们还发现,当舷外马达的推力或纵倾角减小时,系统变得不稳定。这一发现与先前研究中进行的全面工艺测试的结果一致。其次,证明了系统非线性的极限环是稳定的。这两种分析表明,海豚化符合超临界Hopf分岔。进一步,在分岔点附近,发现稳定平衡点与稳定极限环可以共存。最后,我们在全尺寸测试中证实了这一现象。
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来源期刊
Journal of Marine Science and Technology
Journal of Marine Science and Technology 工程技术-工程:海洋
CiteScore
5.60
自引率
3.80%
发文量
47
审稿时长
7.5 months
期刊介绍: The Journal of Marine Science and Technology (JMST), presently indexed in EI and SCI Expanded, publishes original, high-quality, peer-reviewed research papers on marine studies including engineering, pure and applied science, and technology. The full text of the published papers is also made accessible at the JMST website to allow a rapid circulation.
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