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首页> 外文期刊>Progress in Nuclear Energy >'SAIRS'- SCALABLE AMTEC INTEGRATED REACTOR SPACE POWER SYSTEM
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'SAIRS'- SCALABLE AMTEC INTEGRATED REACTOR SPACE POWER SYSTEM

机译:'SAIRS'-可扩展的AMTEC集成反应堆空间电源系统

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Conceptual Designs of three, 111 kWe, Scalable AMTEC Integrated Reactor Space Power Systems (SAIRS) are developed. These systems employ fast-spectrum reactors cooled by sodium (Na) heat pipes, C-C armored, potassium (K) heat pipes radiators, and Alkali Metal Thermal-To-Electric Conversion (AMTEC) units. The reactor Na- and the radiator K-heat pipes operate at < 47% of their prevailing capillary and/or sonic limit. The reactor core is comprised of 60 modules, each has 3 UN fuel pins with rhenium (Re) cladding brazed to a central Na / Mo-14%Re heat pipe of the same OD (1.5 cm). Although heavy, Re is compatible with UN fuel and an effective Spectral Shift Absorber (SSA) that ensures reactor's sub-criticality when fully submerged in wet sand or water, following a launch abort accident. Each of the 6 radiator panels in SAIRS has 6 double-vapor-cavity potassium heat pipes for removing the rejected heat from one of six AMTEC blocks. Each block consists of either 3 or 4 Na-AMTEC units that are heated by ten reactor Na-heat pipes. The AMTEC unit measures 410 x 594 x 115 mm in outside dimensions and weights 44.3 kg. These units are connected in series in 3 or 4 parallel strings for redundancy, while providing a terminal voltage of 400 V DC. At an AMTEC cold side temperature of 700 K and reactor exit temperatures of 1202 K, 1176 K and 1133 K, the nominal efficiencies of the three SAIRS options are 27.3%, 26.9% and 22.7% respectively, resulting in low system masses. The Na-AMTEC units in SAIRS operate at 64-86% of their peak electrical powers, providing for up to 14-36% passive load-following increase in demand without actively increasing the reactor power. The three SAIRS options are identical, except in the efficiency and the number (18 or 24) and electrical connections of Na-AMTEC units, and have alphas ≤ 30.5 kg/kWe and total heights and major diameters of ≤ 6 m and ≤ 4 m, respectively.
机译:开发了三个111 kWe可扩展AMTEC集成反应堆空间动力系统(SAIRS)的概念设计。这些系统采用由钠(Na)热管,C-C铠装,钾(K)热管散热器和碱金属热电转换(AMTEC)单元冷却的快谱反应堆。反应堆Na热管和散热器K热管的运行毛细管和/或声波极限的<47%。反应堆堆芯由60个模块组成,每个模块有3个UN燃料销,with(Re)覆层钎焊到相同OD(1.5厘米)的Na / Mo-14%Re中央热管上。尽管重,但Re与UN燃料兼容,并且是有效的光谱偏移吸收器(SSA),可确保在发射中止事故后完全浸没在湿沙或水中时反应堆的亚临界。 SAIRS的6个散热器面板中的每一个都有6个双蒸气腔钾热管,用于从6个AMTEC块之一中除去热量。每个模块由3个或4个Na-AMTEC单元组成,由10个反应堆Na热管加热。 AMTEC装置的外部尺寸为410 x 594 x 115毫米,重量为44.3千克。这些单元以3或4个并联串的形式串联连接,以提供冗余,同时提供400 V DC的终端电压。在AMTEC的冷端温度为700 K,反应器出口温度为1202 K,1176 K和1133 K的情况下,三种SAIRS选项的标称效率分别为27.3%,26.9%和22.7%,导致系统质量低。 SAIRS中的Na-AMTEC装置以其峰值电力的64-86%运行,在需求增加之后可提供多达14-36%的无源负载,而无需积极增加反应堆功率。除了效率和数量(18或24)和Na-AMTEC装置的电气连接以外,这三个SAIRS选项是相同的,其alpha≤30.5 kg / kWe,总高度和主直径≤6 m和≤4 m , 分别。

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