海洋固定平台结构-桩-流-土相互作用模型的数值分析

IF 0.7 Q4 ENGINEERING, OCEAN
Shehata E. Abdel Raheem, E. Aal, A. Abdelshafy, Mahmoud H. Mansour, M. Omar
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引用次数: 3

摘要

需要对海上平台进行现场分析,以便对新结构进行正确设计,并对现有结构进行真实评估。此外,确保平台组件在最大和最小操作载荷和环境条件下的结构完整性。进行了现场分析,以验证具有所有附件的结构构件在运行条件或风暴条件下支撑施加荷载的坚固性和能力。对海底平台结构和桩土相互作用进行了非线性有限元分析,以估计典型固定式海上平台的原位性能。SACS软件用于计算模型的固有频率,并根据现场分析获得平台接头的响应,然后是选定构件的应力及其节点位移。环境载荷的方向和水深变化对原位分析行为的结果有重要影响。土-结构相互作用对导管架基础响应的影响预测对于估计海洋平台井的载荷和对海洋基础进行现场分析的真实模拟是必要的。研究结果表明,现场响应调查对于海洋平台在环境载荷变化下的安全设计和运行至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical analysis for structure-pile-fluid-soil interaction model of fixed offshore platform
In-place analysis for offshore platforms is required to make proper design for new structures and true assessment for existing structures. In addition, ensure the structural integrity of platforms components under the maximum and minimum operating loads and environmental conditions. In-place analysis was carried out to verify the robustness and capability of structural members with all appurtenances to support the applied loads in either operating condition or storm conditions. A nonlinear finite element analysis is adopted for the platform structure above the seabed and the pile–soil interaction to estimate the in-place behavior of a typical fixed offshore platform. The SACS software is utilized to calculate the natural frequencies of the model and to obtain the response of platform joints according to in-place analysis then the stresses at selected members, as well as their nodal displacements. The directions of environmental loads and water depth variations have an important effect on the results of the in-place analysis behavior. The influence of the soil-structure interaction on the response of the jacket foundation predicts is necessary to estimate the loads of the offshore platform well and real simulation of offshore foundation for the in-place analysis. The result of the study shows that the in-place response investigation is quite crucial for safe design and operation of offshore platform against the variation of environmental loads.
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来源期刊
自引率
22.20%
发文量
0
期刊介绍: The OCEAN SYSTEMS ENGINEERING focuses on the new research and development efforts to advance the understanding of sciences and technologies in ocean systems engineering. The main subject of the journal is the multi-disciplinary engineering of ocean systems. Areas covered by the journal include; * Undersea technologies: AUVs, submersible robot, manned/unmanned submersibles, remotely operated underwater vehicle, sensors, instrumentation, measurement, and ocean observing systems; * Ocean systems technologies: ocean structures and structural systems, design and production, ocean process and plant, fatigue, fracture, reliability and risk analysis, dynamics of ocean structure system, probabilistic dynamics analysis, fluid-structure interaction, ship motion and mooring system, and port engineering; * Ocean hydrodynamics and ocean renewable energy, wave mechanics, buoyancy and stability, sloshing, slamming, and seakeeping; * Multi-physics based engineering analysis, design and testing: underwater explosions and their effects on ocean vehicle systems, equipments, and surface ships, survivability and vulnerability, shock, impact and vibration; * Modeling and simulations; * Underwater acoustics technologies.
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