首页> 外文会议>International congress on advances in nuclear power plants >COMPARISON OF NET PRESENT VALUE FOR CONSTRUCTION PROJECTS OF TWO OFFSHORE FLOATING NUCLEAR POWER PLANT DESIGNS, USING A MONTE CARLO METHOD FOR EVALUATION OF THE PROJECT UNCERTAINTIES
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COMPARISON OF NET PRESENT VALUE FOR CONSTRUCTION PROJECTS OF TWO OFFSHORE FLOATING NUCLEAR POWER PLANT DESIGNS, USING A MONTE CARLO METHOD FOR EVALUATION OF THE PROJECT UNCERTAINTIES

机译:两种海上浮动核电站设计净现象价值的比较,利用蒙特卡罗法评价项目不确定性

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The Offshore Floating Nuclear Plant (OFNP) design creatively builds on two established technologies, namely light water reactors (LWRs) and floating oil/gas platforms. Marine siting as well as several design features produce a particularly safe plant. The concept exploits the advances and experience in the construction of large floating structures in the oil/gas offshore industry and naval shipyards to decrease construction time and cost compared to standard nuclear power plants. This work aims to compare the Net Present Value (NPV) of two different projects, when important uncertainties are taken into account: 1. Construction of multiple (up to four) small modular units (275 MW each) 2. Construction of one single unit of equivalent power (1100 MW). Some of the major sources of uncertainties in large and complex nuclear projects are price of electricity, construction cost, discount rate, years of operation, capacity factor and transportation costs. Such sources of uncertainty are quantified through specification of documented averages and reasonable ranges of variability. This information is first used to perform a sensitivity analysis which shows that the NPV of an OFNP project is affected most strongly by price of electricity, construction cost and discount rate. Then, all uncertainties are assigned a probability distribution function (pdf) and combined with a Monte Carlo approach to generate a pdf for the NPV of a project. The results show that construction of four small modular units is the preferred alternative as it is characterized by a higher average and median NPV. Additional qualitative advantages of the smaller modular-units include the lower initial capital expenses, hence lower financial risk, and higher project flexibility overall.
机译:浮动核电站(OFNP)设计创造性地构建了两种建立的技术,即轻型水反应堆(LWRS)和浮油/天然气平台。海洋选址以及几种设计特征产生特别安全的植物。该概念利用了石油/天然气海上行业和海军造船厂建设大型浮动结构的进展和经验,以减少与标准核电站相比的施工时间和成本。当考虑到重要的不确定因素时,这项工作旨在比较两个不同项目的净目前值(N​​PV):1。施工多个(最多四个)小模块化单位(每单位275兆瓦)2。一个单位的构造等效功率(1100 mW)。大型和复杂的核项目中的一些主要不确定性来源是电力,建筑成本,折扣率,经营多年,容量因素和运输成本。这些不确定性来源通过规范记录的平均值和合理的可变性范围来量化。该信息首先用于执行敏感性分析,表明OFNP项目的NPV受电,建筑成本和折扣率的价格受到最强烈的影响。然后,所有不确定性都被分配了概率分布函数(PDF)并与Monte Carlo方法组合以生成项目NPV的PDF。结果表明,四个小模块化单元的构造是优选的替代方案,因为它的特征在于较高的平均值和中值NPV。较小的模块单元的额外定性优势包括较低的初始资本费用,从而降低财务风险,总体上更高的项目灵活性。

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