首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >FATIGUE LIFE CALCULATION OF DEEP WATER COMPOSITE PRODUCTION RISERS BY RAIN FLOW CYCLE COUNTING METHOD
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FATIGUE LIFE CALCULATION OF DEEP WATER COMPOSITE PRODUCTION RISERS BY RAIN FLOW CYCLE COUNTING METHOD

机译:用雨水循环计数法计算深水复合生产层的疲劳寿命。

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Composite production risers in deep sea condition operate in harsh environment induced by wind and waves together with large axial tension fluctuations. Therefore, a suitable fatigue analysis of the riser stress joints must be undertaken at the structural design stage to ensure their adequate lifespan of 25-30 years. The composite riser, under study, is considered to be a part of Tension Leg Platform (TLP) to be installed at a depth of 2000 m. The probabilistic records of twelve sea states are used to simulate the expected loads for its entire service life.The response time histories are obtained by implicit time domain analysis of the composite riser for each sea state of random nature, duly considering the nonlinearities involved. Each stress time history is decomposed into equivalent stress blocks. A stress range histogram is generated in terms of the number of cycles in each block. The rain flow cycle counting method is hence used to estimate the cumulative fatigue damage. Palmgren- Miner rule is used to calculate the damage caused by stress signals of variable amplitudes.The damage fractions are then summed linearly to give an estimate of the total fatigue life for a particular stress history. The cumulative estimate for its entire service life is hence estimated considering all expected sea states.
机译:深海条件下的复合生产隔水管在恶劣的环境中运行,这种环境在风浪引起的同时轴向张力波动较大。因此,必须在结构设计阶段对立管应力接头进行适当的疲劳分析,以确保其有25-30年的适当使用寿命。研究中的复合立管被认为是张力腿平台(TLP)的一部分,将安装在2000 m的深度处。通过十二种海状态的概率记录来模拟整个使用寿命中的预期载荷。通过对复合立管的隐式时域分析,对每种随机性质的海状态进行隐式时域分析,以获得响应时间历史,并充分考虑了所涉及的非线性。每个应力时间历史都分解为等效的应力块。根据每个块中的循环数生成应力范围直方图。因此,雨水循环计数方法用于估算累积疲劳损伤。使用Palmgren-Miner规则来计算由振幅变化的应力信号引起的损伤,然后将损伤分数进行线性求和,以估算特定应力历史下的总疲劳寿命。因此,在考虑所有预期海况的情况下估算了其整个使用寿命的累积估算值。

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