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Analyzing Parabolic Profile Path for Underwater Towed-Cable 被引量:2
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作者 Vineet K. Srivastava 《Journal of Marine Science and Application》 2014年第2期185-192,共8页
This article discusses the dynamic state analysis of underwater towed-cable when tow-ship changes its speed in a direction making parabolic profile path. A three-dimensional model of underwater towed system is studied... This article discusses the dynamic state analysis of underwater towed-cable when tow-ship changes its speed in a direction making parabolic profile path. A three-dimensional model of underwater towed system is studied. The established governing equations for the system have been solved using the central implicit finite-difference method. The obtained difference non-linear coupled equations are solved by Newton's method and satisfactory results were achieved. The solution of this problem has practical importance in the estimation of dynamic loading and motion, and hence it is directly applicable to the enhancement of safety and the effectiveness of the offshore activities. 展开更多
关键词 underwater towed-cable underwater towed system parabolic profile central implicit finite-difference method Newton's method offshore activities
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Dynamic Analysis of Towed and Variable Length Cable Systems 被引量:5
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作者 王树新 王延辉 李晓平 《China Ocean Engineering》 SCIE EI 2007年第2期331-341,共11页
Towed cable systems are frequently used in marine measurements where the length of the towed cable varies during launch and recovery. In this paper a novel method for modeling variable length cable systems is introduc... Towed cable systems are frequently used in marine measurements where the length of the towed cable varies during launch and recovery. In this paper a novel method for modeling variable length cable systems is introduced based on the finite segment formulation. The variable length of the towed cable is described by changing the length of the segment near the towing point and by increasing or decreasing the number of the discrete segments of the cable. In this way, the elastic effects of the cable can be easily handled since geometry and material properties of each segment are kept constant. Experimental results show that the dynamic behavior of the towed cable is consistent between the model and the physical cable. Results show that the model provides numerical efficiency and simulation accuracy for the variable length towed system. 展开更多
关键词 underwater towed system cable dynamics mtdtibody dynamics variable length elastic segment
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