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1)  TLP
张力腿
1.
Fatigue reliability analysis of Vortex Induced Vibration of TLP tethers in waves and current;
张力腿系缆系统涡激振动疲劳可靠性分析
2.
The Tension Leg Platform(TLP) has been developed fast and widely applied within a little more than twenty years.
在短短20多年时间里,张力腿平台得到迅速发展和广泛应用,已逐步扩展到全球各大海上石油产区,其结构形式也在不断改进,以适应海洋油气开发的深水化和建造的经济性。
2)  tension leg
张力腿
1.
Using mixed method, temperature induced internal forces of a curved submerged-floating tunnel (SFT) supported by tension legs were investigated.
采用混合法研究张力腿定位的曲线形水中悬浮隧道的温度内力。
2.
Based on the equations of vortex-induced oscillation of tension legs, the effect of parametric excitation frequency on the first-order dynamic response of a tension leg was investigated by considering the non-linear fluid damping and parametric excitation.
利用张力腿涡激振动方程,在考虑非线性流体阻尼和参数激励的条件下,应用伽辽金法和数值积分法,计算分析了参数激励频率对张力腿1阶涡激动力响应的影响,得出了位移响应、动弯矩、动剪力与参数激励频率的关系。
3)  tension leg
张力型腿
4)  tension leg platform (TLP)
张力腿平台
1.
Most of the existing methods for analyzing fatigue damage of the tether of tension leg platform (TLP) restrict the displacements of TLP to small magnitude, leaving out of the case of account the case of finite displacements in adverse operation state.
目前在分析张力腿平台(TLP)疲劳损伤时,通常限定平台只发生小位移,未考虑不利工况下平台发生有限位移的情况。
2.
Unlike fixed platform, Tension Leg Platform (TLP) is a floating structure with 6 degrees of freedom.
与固定式平台不同,张力腿平台(TLP)是一个浮式结构,具有六个运动自由度。
5)  TLP
张力腿平台
1.
Physical modelling of suction foundations of TLPs under horizontal loads;
水平荷载作用下张力腿平台吸力式基础的物理模拟
2.
Response Analysis of TLP Tendons;
张力腿平台系索响应研究
3.
Research on TLP Global Response Analysis Method;
张力腿平台总体响应分析方法研究
6)  tether stiffness
张力腿刚度
1.
In order to determine the relation between TLP motion and tether stiffness,SESAM/WADAM software is used to analyze this problem.
张力腿内张力变动对升沉、横摇和纵摇等运动影响显著,为了确定张力腿刚度变化与运动响应的关系,采用SESAM/WADAM对该问题进行了研究。
补充资料:拜耳张力
分子式:
CAS号:

性质:又称拜耳张力。化合物分子内部,由于键角屈挠(偏离正常键角)所产生的张力。键角的屈挠越大,角张力越大,分子内能越高,结构越不稳定。

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