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首页> 外文期刊>The Journal of Supercritical Fluids >Residence time distribution measurements and flow modeling in a supercritical water oxidation reactor:Application of transfer function concept
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Residence time distribution measurements and flow modeling in a supercritical water oxidation reactor:Application of transfer function concept

机译:超临界水氧化反应器中停留时间分布的测量和流动模型:传递函数概念的应用

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摘要

Residence time distribution(RTD)measurements are carried out in a flow-through tubular supercritical water oxidation(SCWO)reactor using ex situ pulse response experiments.The experiments are performed from ambient to supercritical water conditions with a volumetric flow rate fixed at 1 ml/min.The transfer function concept is used to interpret tracer information and to elucidate hydrodynamic flow patterns inside the"hot zone"of the reactor vessel.The experimental RTD curves are modeled by an axially dispersed plug flow.At supercritical conditions,the studied tubular SCWO reactor can be characterized as a mixed flow system(with Peclet numbers of 1.4-2).The results also indicate the presence of fast preferential fluid flow in the reactor below 573 K and 10 MPa.
机译:停留时间分布(RTD)测量是在流动的管状超临界水氧化(SCWO)反应器中使用异位脉冲响应实验进行的,该实验是在环境至超临界水的条件下进行的,体积流量固定为1 ml /最小。传递函数概念用于解释示踪剂信息并阐明反应堆容器“热区”内的流体动力流型。实验性RTD曲线通过轴向分散的塞流建模。在超临界条件下,研究的管状SCWO该反应堆可以表征为混合流系统(Peclet数为1.4-2)。结果还表明,在573 K和10 MPa以下,反应堆中存在快速优先流体流动。

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