首页> 外文会议>International topical meeting on high temperature reactor technology >RESULTS OF TESTS TO DEMONSTRATE A SIX-INCH DIAMETER COATER FOR PRODUCTION OF TRISO-COATED PARTICLES FOR ADVANCED GAS REACTOR EXPERIMENTS
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RESULTS OF TESTS TO DEMONSTRATE A SIX-INCH DIAMETER COATER FOR PRODUCTION OF TRISO-COATED PARTICLES FOR ADVANCED GAS REACTOR EXPERIMENTS

机译:用于展示六英寸直径涂布机的试验结果,用于生产用于先进气体反应器实验的三核涂层颗粒

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The Next Generation Nuclear Plant (NGNP)/Advanced Gas Reactor (AGR) Fuel Development and Qualification Program includes a series of irradiation experiments in Idaho National Laboratory's (rNL's) Advanced Test Reactor. TRISO-coated particles for the first AGR experiment, AGR-1, were produced at Oak Ridge National Laboratory (ORNL) in a two-inch diameter coater. A requirement of the NGNP/AGR Program is to produce coated particles for later experiments in coaters more representative of industrial scale. Toward this end, tests have been performed by Babcock and Wilcox (B&W) in a six-inch diameter coater. These tests are expected to lead to successful fabrication of particles for the second AGR experiment, AGR-2. While a thorough study of how coating parameters affect particle properties was not the goal of these tests, the test data obtained provides insight into process parameter/coated particle property relationships. Most relationships for the six-inch diameter coater followed trends found with the ORNL two-inch coater, in spite of differences in coater design and bed hydrodynamics. For example the key coating parameters affecting pyrocarbon anisotropy were coater temperature, coating gas fraction, total gas flow rate and kernel charge size. Anisotropy of the outer pyrolytic carbon (OPyC) layer also strongly correlates with coater differential pressure. In an effort to reduce the total particle fabrication run time, silicon carbide (SiC) was deposited with methyltrichlorosilane (MTS) concentrations up to 3 mol %. Using only hydrogen as the fluidizing gas, the high concentration MTS tests resulted in particles with lower than desired SiC densities. However when hydrogen was partially replaced with argon, high SiC densities were achieved with the high MTS gas fraction.
机译:下一代核电站(NGNP)/先进的气体反应堆(AGR)燃料开发和资格计划包括一系列在爱达荷国家实验室(RNL)先进的测试反应堆中的一系列辐照实验。用于第一次AGR实验的三型涂层颗粒,在橡树岭国家实验室(Orn1)中生产了两英寸直径的涂布机。 NGNP / AGR程序的要求是生产涂层颗粒,以便在涂料器中更高的工业规模代表的涂层器实验。朝向此结束,已经通过六英寸直径涂布机的Babcock和Wilcox(B&W)进行了测试。预计这些测试将导致成功制造第二折Agr实验的粒子,AGR-2。虽然对涂层参数影响粒子特性的彻底研究不是这些测试的目标,但是获得的测试数据提供了进程参数/涂覆颗粒性质关系的洞察力。尽管涂布机设计和床流体动力学差异,但六英寸直径涂布机的大多数关系呈现在ornl两英寸涂布机的趋势。例如,影响Pyrocarbon各向异性的关键涂层参数是涂涂机温度,涂布气体馏分,总气体流速和核电荷尺寸。外热解碳(OPYC)层的各向异性也与涂布机差压强烈相关。努力减少总粒子制造运行时间,用甲基三氯硅烷(MTS)浓度高达3mol%的碳化硅(SiC)沉积。仅使用氢作为流化气体,高浓度MTS测试导致颗粒低于所需的SiC密度。然而,当氢气被氩气部分代替时,通过高MTS气体馏分实现高的SiC密度。

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