导读:本文包含了垂向运动响应论文开题报告文献综述、选题提纲参考文献及外文文献翻译,主要关键词:低频,深水,原理,差分,论文,平台,tension。
垂向运动响应论文文献综述
赵藤,张绒,张世义[1](2018)在《深水吊缆非线性垂向运动响应分析》一文中研究指出针对深水吊装过程中吊缆及吊载在外部扰动作用下的运动幅值较大,运动特性呈现较强的非线性问题,提出基于Hamilton原理求解吊缆非线性运动响应的方法,建立吊缆的非线性运动方程,采用有限差分方法进行求解,与文献的试验值比较,结果吻合较好,验证求解方法的准确性和可靠性。以4 500 m缆长为例,对不同吊缆上端激励周期下吊缆不同位置处的缆张力、垂向位移进行计算分析,结果表明,当吊缆长度较大时,缆张力及吊缆垂向位移在整个吊缆内不是均匀分布的,缆张力及垂向位移的传播呈现明显的波动现象,且随着吊缆长度和上端激励周期的增加,波动的幅值及变化剧烈程度逐渐减小。(本文来源于《船海工程》期刊2018年04期)
Mohammad,Reza,Tabeshpour,Ebrahim,Malayjerdi[2](2016)在《张力腿平台垂向响应纵摇运动研究(英文)》一文中研究指出Tendons vertically moor Tension-Leg Platforms(TLPs), thus, a deep understanding of physical tendon stresses requires the determination of the total axial deformation of the tendons, which is a combination of the heave, pitch, and surging responses. The vertical motion of the lateral sides of the TLP is coupled with surge and constitutes a portion of the pitch motion. Tendons are connected to the sides of the TLP; hence, the total displacement of the lateral sides is related to the total deformation of the tendons and the total axial stress. Therefore, investigating the total vertical response at the sides of the TLP is essential. The coupling between various degrees of freedom is not considered in the Response Amplitude Operator(RAO). Therefore, in frequency domain analysis, the estimated vertical RAO is incomplete. Also, in the time domain, only the heave motion at the center of TLP is typically studied; this problem needs to be addressed. In this paper, we investigate the portion of the pitch motion in the vertical response at the sides of the TLP in both the frequency and time domains. Numerical results demonstrate a significant effect of the pitch motion in the vertical motion of the edges of the TLP in some period ranges.(本文来源于《Journal of Marine Science and Application》期刊2016年02期)
杨立军,肖龙飞,杨建民[3](2010)在《半潜式平台垂向运动低频响应特性》一文中研究指出对半潜式平台垂向运动性能(包括垂荡、横摇和纵摇)进行数值计算分析。与模型试验结果的比较表明,对于半潜式平台这类由柱体组成的结构物进行水动力数值预报,忽略粘性力作用会使得低频运动响应计算结果产生偏差,需要应用叁维势流理论和Morison公式相结合的方法。横摇和纵摇运动固有频率均低于波浪频率,在波浪慢漂力作用下会出现显着低频运动响应。垂荡运动是否出现低频响应则与所处海况联系紧密。(本文来源于《海洋工程》期刊2010年02期)
垂向运动响应论文开题报告
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Tendons vertically moor Tension-Leg Platforms(TLPs), thus, a deep understanding of physical tendon stresses requires the determination of the total axial deformation of the tendons, which is a combination of the heave, pitch, and surging responses. The vertical motion of the lateral sides of the TLP is coupled with surge and constitutes a portion of the pitch motion. Tendons are connected to the sides of the TLP; hence, the total displacement of the lateral sides is related to the total deformation of the tendons and the total axial stress. Therefore, investigating the total vertical response at the sides of the TLP is essential. The coupling between various degrees of freedom is not considered in the Response Amplitude Operator(RAO). Therefore, in frequency domain analysis, the estimated vertical RAO is incomplete. Also, in the time domain, only the heave motion at the center of TLP is typically studied; this problem needs to be addressed. In this paper, we investigate the portion of the pitch motion in the vertical response at the sides of the TLP in both the frequency and time domains. Numerical results demonstrate a significant effect of the pitch motion in the vertical motion of the edges of the TLP in some period ranges.
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垂向运动响应论文参考文献
[1].赵藤,张绒,张世义.深水吊缆非线性垂向运动响应分析[J].船海工程.2018
[2].Mohammad,Reza,Tabeshpour,Ebrahim,Malayjerdi.张力腿平台垂向响应纵摇运动研究(英文)[J].JournalofMarineScienceandApplication.2016
[3].杨立军,肖龙飞,杨建民.半潜式平台垂向运动低频响应特性[J].海洋工程.2010