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首页> 外文期刊>Transactions of the American nuclear society >Experimental Measurement of Flow Phenomena in a VHTR Lower Plenum Model
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Experimental Measurement of Flow Phenomena in a VHTR Lower Plenum Model

机译:在VHTR下脾模型中流动现象的实验测量。

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摘要

The Very-High-Temperature Reactor (VHTR) is one of six reactor technologies chosen for further development by the Generation IV International Forum. In addition this system is the leading candidate for the Next Generation Nuclear Power (NGNP) Project in the U.S which has the goal of demonstrating the production of emissions free electricity and hydrogen by 2015. In preparation for the thermal-hydraulics and safety analyses that will be required to confirm the performance of the NGNP, work has begun on readying the computational tools that will be needed to predict the thermal-hydraulics conditions and safety margins of the reactor design. Meaningful feasibility studies for VHTR designs will require accurate, reliable predictions of material temperatures which depend upon the thermal convection in the coolant channels of the core and other components. Unfortunately, one-dimensional system codes for gas-cooled reactors typically underpredict these temperatures, particularly for reduced power operations and hypothesized accident scenarios. Likewise, most turbulence models in general-purpose CFD codes also underpredict these temperatures. Matched-Index-of-Refraction (MIR) fluid dynamics experiments have been designed and built to develop benchmark databases for the assessment of CFD solutions of the momentum equations, scalar mixing and turbulence models for typical VHTR plenum geometries in the limiting case of negligible buoyancy and constant fluid properties.
机译:高温反应堆(VHTR)是第四代国际论坛选择进一步开发的六种反应堆技术之一。此外,该系统是美国下一代核电(NGNP)项目的主要候选者,该项目的目标是到2015年证明无排放电力和氢气的生产。为进行热工液压和安全分析做准备为了确认NGNP的性能,已经开始着手准备用于预测热工液压条件和反应堆设计安全裕度的计算工具。 VHTR设计的有意义的可行性研究将需要准确,可靠的材料温度预测,该温度取决于型芯和其他组件的冷却剂通道中的热对流。不幸的是,用于气冷反应堆的一维系统代码通常会低估这些温度,特别是对于降低功率运行和假设的事故场景。同样,通用CFD代码中的大多数湍流模型也会低估这些温度。设计并建立了匹配折射率折射率(MIR)流体动力学实验,以开发基准数据库,以在浮力可忽略的情况下评估典型VHTR充气几何形状的动量方程,标量混合和湍流模型的CFD解决方案和恒定的流体特性。

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