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Variable and Assured Peak Electricity Production from Base-Load Light-Water Reactors with Heat Storage and Auxiliary Combustible Fuels

机译:带有储热和辅助可燃燃料的轻载反应堆可产生可变且确定的峰值电力

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摘要

In a low-carbon world (nuclear, wind, solar, and hydro) there is the need for assured dispatchable electricity to replace the historical role of fossil fuels. Base-load reactors can provide variable electricity to the grid by (1) sending some of their output (steam) to storage at times of low electricity prices and (2) using stored heat to produce added peak electricity at times of high electricity prices. Heat storage (steam accumulators, sensible heat, etc.) is less expensive than electricity storage (batteries, hydro pumped storage, etc.). The added cost of incrementally larger or standalone turbine generators for peak electricity production is small. However, energy storage systems (heat or electricity) can't provide assured capacity for extreme events, be it supply side (extended low-wind or low-solar conditions in systems with high wind or solar capacity) or demand side (long periods of cold or hot weather). With heat storage systems there is the option to provide peak electricity output when heat storage is depleted by heat addition with a water-tube boiler using natural gas, biofuels, or ultimately hydrogen. Fuel consumption for assured peaking capacity is small because most of the time the heat storage system meets peak electricity demands. The same systems enable reliable low-cost heat production for industry. Such systems enable an all nuclear or nuclear/hydro/ wind/solar/geothermal low-carbon electricity grid.
机译:在低碳世界(核能,风能,太阳能和水力发电)中,需要有保证的可调度电力来替代化石燃料的历史作用。基本负荷反应堆可通过以下方式向电网提供可变的电力:(1)在电价低廉时将其部分输出(蒸汽)发送到存储,以及(2)在电价高昂时利用存储的热量产生增加的峰值电。蓄热(蒸汽蓄热器,显热等)比蓄电(电池,水力抽水蓄能等)便宜。用于峰值发电的增量式更大或独立的涡轮发电机的增加成本很小。但是,储能系统(热或电)不能为极端事件提供有保证的容量,无论是供应侧(高风能或太阳能容量的系统中扩展的低风或低太阳条件)还是需求侧(长时间的寒冷或炎热的天气)。使用储热系统,当使用天然气,生物燃料或最终使用氢气的水管锅炉通过添加热量来耗尽热量时,可以选择提供峰值电力输出。保证峰值容量的燃料消耗很小,这是因为大多数时间储热系统都满足峰值用电需求。相同的系统可为工业提供可靠的低成本热量生产。这样的系统使全核或核/水/风/太阳能/地热低碳电网成为可能。

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