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Load following with Small Modular Reactors (SMR): A real options analysis

机译:小型模块化反应堆(SMR)的负载跟踪:实物分析

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摘要

Load following is the potential for a power plant to adjust its power output as demand and price for electricity fluctuates throughout the day. In nuclear power plants, this is done by inserting control rods into the reactor pressure vessel. This operation is very inefficient as nuclear power generation is composed almost entirely of fixed and sunk costs; therefore, lowering the power output doesn't significantly reduce generating costs and the plant is thermo-mechanical stressed. A more efficient solution is to maintain the primary circuit at full power and to use the excess power for cogeneration. This paper assesses the technical-economic feasibility of this approach when applied to Small Modular Reactors (SMR) with two cogeneration technologies: algae-biofuel and desalinisation. Multiple SMR are of particular interest due to the fractional nature of their power output. The result shows that the power required by an algae-biofuel plant is not sufficient to justify the load following approach, whereas it is in the case of desalination. The successive economic analysis, based on the real options approach, demonstrates the economic viability of the desalination in several scenarios. In conclusion, the coupling of SMR with a desalination plant is a realistic solution to perform efficient load following.
机译:随着电力需求和价格全天波动,负荷跟踪是发电厂调整其功率输出的潜力。在核电站中,这是通过将控制棒插入反应堆压力容器中来完成的。由于核能发电几乎全部由固定成本和沉没成本组成,因此该操作效率很低。因此,降低功率输出不会显着降低发电成本,并且该工厂承受着热机械压力。一种更有效的解决方案是将主电路保持在满功率状态,并将多余的功率用于热电联产。本文评估了将这种方法应用于带有两种热电联产技术的小型模块化反应堆(SMR)的技术经济可行性:藻类生物燃料和脱盐。多个SMR由于其功率输出的分数性质而特别受关注。结果表明,藻类生物燃料工厂所需的功率不足以证明跟随负荷的合理性,而在淡化的情况下却足够。基于实物期权方法的后续经济分析证明了在多种情况下淡化的经济可行性。总之,将SMR与海水淡化厂结合使用是实现高效负载跟踪的现实解决方案。

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