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Life-cycle cost assessment of seismically base-isolated large tanks in LNG plants

机译:LNG植物中地震底底坦克的生命周期成本评估

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A new methodology is being introduced to address the life-cycle cost (LCC) of base-isolated large liquefied natural gas (LNG) tanks. The relationship between LCC and seismic fortification intensity is established to evaluate how much reduction of earthquake force can minimize the LCC. Each composition of LCC is analyzed including the initial cost, the isolators cost and the excepted damage cost. The isolators cost consists of the cost of lead rubber bearings and dampers. The cost of lead rubber bearings is proposed proportional to its volume and the cost of dampers is not only related to its maximum displacement but also to its tonnage. The concept of seismic intensity is being used to estimate the expected damage cost, greatly simplifying the calculation. Moreover, a tank in a LNG receiving terminal in China is employed as an example to assess its LCC in isolated and non-isolated situation respectively. The results show that the proposed method is efficient and the expected damage cost is enormously reduced because of the application of isolators, which leads to the reduction of the LCC of the tank.
机译:正在引入一种新的方法来解决基本隔离的大型液化天然气(LNG)罐的生命周期成本(LCC)。建立了LCC与地震强化强度之间的关系,以评估地震力的减少可以最小化LCC。分析了LCC的每种组成,包括初始成本,隔离器成本和杂于损害成本。隔离器成本包括铅橡胶轴承和阻尼器的成本。铅橡胶轴承的成本与其体积成正比,阻尼器的成本不仅与其最大位移有关,而且还与其吨位有关。地震强度的概念正在用于估计预期的损害成本,大大简化了计算。此外,在中国的LNG接收终端中的罐作为示例,以分别评估其LCC分别的LCC。结果表明,由于施加隔离器,所提出的方法是有效的,并且预期的损坏成本非常减少,这导致罐的LCC的降低。

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