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Hydroelastic analysis of a truss pontoon Mobile Offshore Base

机译:桁架浮桥移动式海上基础的水弹性分析

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Very Large Floating Structures (VLFS) are one among the solution to pursue an environmentally friendly and sustainable technology in birthing land from the sea. VLFS are extra-large in size and mostly extra-long in span. VLFS may be classified into two broad categories, namely the pontoon type and semi-submersible type. The pontoon-type VLFS is a flat box structure floating on the sea surface and suitable in regions with lower sea state. The semi-submersible VLFS has a deck raised above the sea level and supported by columns which are connected to submerged pontoons and are subjected to less wave forces. These structures are very flexible compared to other kinds of offshore structures, and its elastic deformations are more important than their rigid body motions. This paper presents hydroelastic analysis carried out on an innovative VLFS called truss pontoon Mobile Offshore Base (MOB) platform concept proposed by Srinivasan and Sundaravadivelu (2013). The truss pontoon MOB is modelled and hydroelastic analysis is carried out using HYDRAN-XR*for regular 0°waves heading angle. Results are presented for variation of added mass and damping coefficients, diffraction and wave excitation forces, RAOs for translational, rotation and deformational modes and vertical displacement at salient sections with respect to wave periods.
机译:大型浮式结构(VLFS)是在海上出生的土地上追求环保和可持续技术的解决方案之一。 VLFS的尺寸过大,跨度通常超长。 VLFS可以分为两大类,即浮筒型和半潜型。浮船式VLFS是一种漂浮在海面上的扁平箱形结构,适用于海平面较低的地区。半潜式VLFS的甲板高出海平面,并由与水下浮船相连的柱支撑,并承受较小的波浪力。与其他海上结构相比,这些结构非常灵活,并且其弹性变形比其刚体运动更重要。本文介绍了由Srinivasan和Sundaravadivelu(2013)提出的名为truss pontoon移动近海基地(MOB)平台概念的创新VLFS进行的水弹性分析。对桁架浮桥MOB进行建模,并使用HYDRAN-XR *对规则的0°波航向角进行水弹性分析。给出了增加质量和阻尼系数,衍射和波激发力,平移,旋转和变形模式的RAO以及凸部相对于波周期的垂直位移的变化结果。

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