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STUDY OF OFFSHORE JACKET PLATFORM ATTACHED WITH TUNED LIQUID COLUMN GAS DAMPER

机译:调谐液柱气体阻尼器的海上夹克平台研究

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With increase in need of energy, scarcity of natural resources also increases. Need for energy has led the people to move into the ocean since they contain abundant natural resources. Offshore platforms play a major role in exploring and exploiting these resources. Jacket platform being a fixed offshore jacket platform is used in water depths 300 to 400 m. The study of behavior of these offshore structures is vital part in the design since they are subjected to dynamic loading of waves, wind, earthquake, ice etc. These structures in hostile environment are subjected to heavy loads. There is need for controlling the response of these structures. This can be achieved by providing external dampers. There are various dampers available to control the response of structures. Tuned liquid dampers (TLD)s and Tuned Liquid Column Damper (TLCD)s use liquid inside to tune its frequency to natural frequency of structure. Tuned Liquid Column Gas Damper (TLCGD) is latest version of dampers. It has a unique flexibility of tuning frequency compared to all other dampers. In the present study, jacket platform is modeled as Multi degree of freedom (MDOF) system. At later stage, for simplistic analysis, MDOF system is reduced to SDOF system using static condensation. Performance of TLCGD for both the systems is compared. Airy's wave theory is used for wave force excitation. Equations of motions for Jacket platform models attached with TLCGD are developed and solved using Newmarks fi method in MATLAB. TLCGD is found to be very flexible in tuning the frequency and maximum reductions in response, 21.3% and 23.14% are observed at 0.3 MPa for MDOF and SDOF systems respectively. Work done shows that the results for MDOF and SDOF are comparable and hence, jacket as SDOF can be used for analysis for reducing the complexities.
机译:随着能源需求的增加,自然资源的稀缺性也增加了。对能源的需求导致人们进入海洋,因为他们拥有丰富的自然资源。离岸平台在探索和开发这些资源中发挥着重要作用。夹克平台是固定的海上夹克平台,用于水深300至400 m。这些海上结构的性能研究是设计中至关重要的部分,因为它们会受到波浪,风,地震,冰等的动态载荷的影响。在恶劣环境中的这些结构会承受重载荷。需要控制这些结构的响应。这可以通过提供外部阻尼器来实现。有多种阻尼器可用于控制结构的响应。调谐式液体阻尼器(TLD)和调谐式液柱阻尼器(TLCD)使用内部的液体将其频率调整为结构的固有频率。可调液柱气体阻尼器(TLCGD)是阻尼器的最新版本。与其他所有阻尼器相比,它具有独特的调谐频率灵活性。在本研究中,夹克平台被建模为多自由度(MDOF)系统。在稍后阶段,为简化分析,使用静态冷凝将MDOF系统简化为SDOF系统。比较了两个系统的TLCGD性能。艾里波理论被用于激励波浪力。使用MATLAB中的Newmarks fi方法开发并求解了TLCGD附带的Jacket平台模型的运动方程。发现TLCGD在调整频率和响应的最大降低方面非常灵活,对于MDOF和SDOF系统,在0.3 MPa时分别观察到21.3%和23.14%的响应。完成的工作表明,MDOF和SDOF的结果是可比的,因此,可以将外套作为SDOF进行分析以降低复杂性。

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