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不同结构形式张力腿平台水动力参数比较分析 被引量:2
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作者 闫发锁 刘浩 +2 位作者 苏威 李辉 孙丽萍 《海岸工程》 2017年第2期1-8,共8页
随着张力腿平台(TLP)在深海油气开发领域的广泛应用,在早期传统式(C-TLP)的基础上衍生出了多种结构形式,其中还有延展式(E-TLP)、最小化深海水面式(MOSES)和海之星式(SeaStar)已具备业界建造运营经验。为了体现TLP各类结构形式的性能特... 随着张力腿平台(TLP)在深海油气开发领域的广泛应用,在早期传统式(C-TLP)的基础上衍生出了多种结构形式,其中还有延展式(E-TLP)、最小化深海水面式(MOSES)和海之星式(SeaStar)已具备业界建造运营经验。为了体现TLP各类结构形式的性能特点,服务于工程开发方案中平台构型选择,本文基于三维势流理论频域方法,针对现已建造的4种TLP的水动力性能及相关参数进行了对比研究。首先,在质量惯性、结构刚度相似的条件下,完成了各类型平台的主尺度方案;其次,采用SESAM软件分析计算了各方案设计平台的附加质量、势流阻尼和运动响应幅值算子(RAO);最后的结果对比表明,不同结构形式对张力腿平台的固有周期影响很大,分散立柱形式的C-TLP与E-TLP的垂向运动响应更小。 展开更多
关键词 张力腿平台 水动力参数性能 结构形式 三维势流理论
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A CFD Based Investigation of the Unsteady Hydrodynamic Coefficients of 3-D Fins in Viscous Flow 被引量:3
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作者 Nazir Zulfiqar 苏玉民 王兆立 《Journal of Marine Science and Application》 2010年第3期250-255,共6页
The motion of the fins and control surfaces of underwater vehicles in a fluid is an interesting and challenging research subject.Typically the effect of fin oscillations on the fluid flow around such a body is highly ... The motion of the fins and control surfaces of underwater vehicles in a fluid is an interesting and challenging research subject.Typically the effect of fin oscillations on the fluid flow around such a body is highly unsteady, generating vortices and requiring detailed analysis of fluid-structure interactions.An understanding of the complexities of such flows is of interest to engineers developing vehicles capable of high dynamic performance in their propulsion and maneuvering.In the present study, a CFD based RANS simulation of a 3-D fin body moving in a viscous fluid was developed.It investigated hydrodynamic performance by evaluating the hydrodynamic coefficients (lift, drag and moment) at two different oscillating frequencies.A parametric analysis of the factors that affect the hydrodynamic performance of the fin body was done, along with a comparison of results from experiments.The results of the simulation were found in close agreement with experimental results and this validated the simulation as an effective tool for evaluation of the unsteady hydrodynamic coefficients of 3-D fins.This work can be further be used for analysis of the stability and maneuverability of fin actuated underwater vehicles. 展开更多
关键词 oscillating 3-D fin RANS hydrodynamic performance viscous flow
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