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Response Characteristics of Semisubmersible-Type-Megafloat in Waves and Accuracy of Hydroelastic Response Analysis Program VODAC

机译:响应特征型百型百搭的波浪和水电响应分析分析方案vodac的准确性

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Technical feasibility and practical design method of SSMF, a Semi-Submersible-Type-Megafloat, was studied under research funding from Corporation for Advanced Transport and Technology. A SSMF which serves as a airport for local air transportation of isolated islands was assumed in the research. Typical deck size of the SSMF is 2200m long, 300m wide and 9m deep. In the design of the SSMF, column supported type structure was chosen to satisfy the strength and functional requirements in the environmental condition around Japanese islands in the pacific ocean. The deck structure is supported by 320 columns with draft of 16m. In the design of structural dynamics of the SSMF, a computer code VODAC was adopted to calculate hydro-elastic response. VODAC is an analysis program of hydro-elastic response of Very Large Floating Structure (VLFS) which has been developed in University of Tokyo. This paper presents a series of experiments and calculations carried out to investigate response characteristics of SSMF and to confirm capability and accuracy of VODAC. Basin experiments were carried out using a scale model, which is elastically and dynamically similar to the designed SSMF airport, and the response characteristics were clarified. A simple numerical model was also proposed as a simplified model of dynamic response of VLFS. This model is a simple beam on elastic foundation, but it is shown that basic response characteristics of the structure can be relatively accurately expressed by this model. Design parameters were discussed using this model. Relationships between major design parameters and dynamic response characteristics were clarified. Furthermore it was shown that this model is not just a qualitative model but gives relatively accurate estimation of the response. It is shown that this model gives upper limits of response of real structure and a good safe side estimation.
机译:SSMF的技术可行性和实用设计方法,半潜水型-Megafloat在先进运输和技术公司的研究资金下研究。在研究中,假设了一个作为机场的SSMF,在研究中被认为是孤立群岛的当地航空运输。 SSMF的典型甲板尺寸为2200摩,宽300米,深9米。在SSMF的设计中,选择了柱支持的型结构,以满足太平洋日本岛周围环境条件的强度和功能要求。甲板结构由320栏支撑,16米草案。在SSMF的结构动力学设计中,采用计算机代码vodac来计算水力弹性响应。 VODAC是在东京大学开发的非常大的浮动结构(VLF)的水力弹性响应的分析计划。本文提出了一系列的实验和计算,以调查SSMF的响应特征,并确认Vodac的能力和准确性。使用比例模型进行盆地实验,该模型是弹性和动态的与设计的SSMF机场相似,澄清响应特性。还提出了一种简单的数值模型作为VLF的动态响应的简化模型。该模型是弹性基础上的简单光束,但结果表明,该模型可以相对准确地表达结构的基本响应特性。使用此模型讨论了设计参数。澄清了主要设计参数与动态响应特征之间的关系。此外,结果表明,该模型不仅仅是定性模型,而且给出了对响应的相对准确的估计。结果表明,该模型提供了实际结构的响应和良好安全侧估计的上限。

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