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TWO-DIMENSIONAL FINITE ELEMENT METHOD FOR DETERMINING NONLINEAR WAVE FORCES ON LARGE SUBMERGED BODIES
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作者 Huang He-ning, Institute of Marine Environmental Protection, State Oceanic Administration, Dalian 116023, P.R. Ch inaLi Jian-cu WangXue-geng, Department of Civil Engineering, Dalian Institute of Technology, Dalian 116024, P.R.China 《Journal of Hydrodynamics》 SCIE EI CSCD 1990年第2期17-26,共10页
In this paper, we first develop the far field asymptotic solutions of the second-order scattering waves for the vertical plane problem taking the second-order Stokes waves as the incident waves. The asymptotic solutio... In this paper, we first develop the far field asymptotic solutions of the second-order scattering waves for the vertical plane problem taking the second-order Stokes waves as the incident waves. The asymptotic solutions satisfy the Laplace equation, the sea bed and free surface boundary conditions and are the out-going waves. Then the radiation conditions of the second-order mattering waves are derived by using the asymptotic solutions. By using the two-dimensinal finite clement method with the radiation conditions imposed on the ar- tificial boundaries, the computer program, known as 'NWF2', for determining nonlinear wave forces on large submerged bodies has been written. As a numerical example, nonlinear wave forces on a semi-circu- lar cylinder lying on the sea bed arc presented. 展开更多
关键词 der TWO-DIMENSIONAL FINITE ELEMENT method FOR DETERMINING NONLINEAR WAVE FORCES ON LARGE SUBMERGED BODIES
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A FINITE ELEMENT/BOUNDARY ELEMENT——MODIFIED MODAL DECOMPOSITION METHOD FOR VIBRATION AND SOUND RADIATION FROM SUBMERGED SHELL OF REVOLUTION
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作者 ZHANG Jingdong and HE Zouyong(Harbin shipbuilding Engineering Institute) 《Chinese Journal of Acoustics》 1989年第4期315-324,共10页
A finite element / boundary element-modified modal decomposition method (FBMMD) is presented for predicting the vibration and sound radiation from submerged shell of revolution. Improvement has been made to accelerate... A finite element / boundary element-modified modal decomposition method (FBMMD) is presented for predicting the vibration and sound radiation from submerged shell of revolution. Improvement has been made to accelerate the convergence to FBMD method by means of introducing the residual modes which take into accaunt the quasi -state contributiort of all neglected modes. As an example, the vibration and sound radiation of a submerged spherical shell excited by axisymmetric force are studied in cases of ka=l,2,3 and 4. From the calculated results we see that the FBMMD method shows a significant improvement to the accuracy of surface sound pressure, normal displacement and directivity patterns of radiating sound, especially to the directivity patterns. 展开更多
关键词 MODIFIED MODAL DECOMPOSITION method FOR VIBRATION AND SOUND RADIATION FROM SUBMERGED SHELL OF REVOLUTION A FINITE ELEMENT/BOUNDARY ELEMENT FBM
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Extraction of Submerged Topographic Line in B-Scan Ultrasonic Image
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作者 SONG Huan ZOU Xianjian YANG Weili 《Wuhan University Journal of Natural Sciences》 CAS CSCD 2015年第4期350-354,共5页
The analysis of underwater topography ultrasonic image, which can be obtained by using B-scan ultrasound imaging technique, is the basis and important work in topography study. In this paper, we present a novel self-a... The analysis of underwater topography ultrasonic image, which can be obtained by using B-scan ultrasound imaging technique, is the basis and important work in topography study. In this paper, we present a novel self-adapted method for the extraction of submerged topographic line. Since the distribution of gray values in the image has a mutation process, this feature is used to appropriately track the topographic line of imaging band, and wavelet denoising method is applied to denoise the obtained lines. The described method also takes the continuity of topography into consideration during tracking procedure. The results show that the extraction error is within 2-pixel width(approximate 1 mm). This method is suitable for the extraction of current model topographic lines with the advantages of good self-adaption, high speed and high resolution. 展开更多
关键词 ultrasonic image submerged topography wavelet denoising method self-adapted tracking
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