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Thermal analysis of the one-stage melting converter and related equipment for vitrification of high-level radioactive wastes

机译:高级放射性废物玻璃化型熔融变换器的热分析

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One-stage melting-converter method for the vitrification of high-level radioactive wastes (HLRAW) was developed and investigated. This method includes the concentration (evaporation), calcination, and vitrification of the HLRAW in one-stage process inside a melting converter. Converter consists of a water-cooled conical metal melting chamber. Capacity for the saturated salty solution is 200 l/h and the capacity for the glass-HLRAW mixture is about 100 kg/h. Calculations showed that at a melt temperature of 1150°C, a cooling-water temperature of 20°C and a thickness of the melt lining of 15 mm the heat flux through the walls is about 75 kW/m{sup}2 and wall temperature is about 55°C. Thermal analysis showed that at the burner heat transfer rate of 460 kW the heat transfer rate for heating and melting of the charge is 20 kW, the heat transfer rate for evaporation of water from the solution is 100 kW, and the heat losses are 240 kW. Therefore, a thermal efficiency of the converter is about 26%. To keep a melt lining on the vault of converter and around a burner nozzle the special design two-phase closed thermosyphons are used. Design and heat transfer characteristics of these thermosyphons are discussed. Calculations have been made for heat removal of the melted glass and fissionable nuclides poured into the metal containers during first 500 hours.
机译:开发并研究了高级放射性废弃物(HLRAW)玻璃化的一级熔融转换方法。该方法包括在熔化转换器内的一级过程中的蜂胶浓度(蒸发),煅烧和玻璃化。转换器由水冷锥形金属熔化室组成。饱和咸溶液的能力为200L / h,玻璃 - 锂锂混合物的容量约为100kg / h。计算显示,在1150℃的熔融温度下,冷却​​水温度为20°C,通过壁的热通量为15mm的熔体衬里的厚度为约75kW / m} 2和壁温约为55°C。热分析表明,在460kW的燃烧器传热速率下,用于加热和熔化的传热速率为20kW,从溶液中蒸发水的传热速率为100 kW,热损失为240 kW 。因此,转换器的热效率约为26%。为了在转换器的拱顶上保持熔体和燃烧器喷嘴的熔体衬里,使用特殊的设计两相封闭的热旋孔。讨论了这些热旋转脊柱的设计和传热特性。在前500小时期间,已经对熔化玻璃和可裂变的核素倒入金属容器中的可裂变核素的计算进行了计算。

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