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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Visualization of fluidized-bed heat exchanger in upward/downward flow condition by neutron radiography
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Visualization of fluidized-bed heat exchanger in upward/downward flow condition by neutron radiography

机译:中子射线照相在上下流动状态下流化床换热器的可视化

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Heat transfer characteristics of a fluidized-bed heat exchanger are dominated by the characteristics of bed-material movement, especially, in the neighboring region of the heat transfer tube. In the present experiment, a simulated fluidized-bed heat exchanger model was partitioned into two channels to form an upward and downward flow simultaneously in the same fluidized-bed model. Then the total amount of circulating material was kept at the same value even at the different void fractions between two channels. The flow pattern of bed material was visualized by neutron radiography with introducing tracers into the fluidized bed. The simulated fluidized bed consisted of aluminum plates, and the bed materials were sands of 96% SiO_2 (mean particle diameter: 0.154-0.321 mm, density: 2550 kg/m~3). Bed materials were almost transparent for neutrons. On the contrary, tracer particles of about 1 mm diameter made of B_4C with clay were opaque. Thus, the tracer particles were detected clear enough for PTV (Particle Tracking Velocimetry). The fluidized-bed behavior was then discussed in relation to the heat transfer characteristics around the heated tubes submerged in the bed.
机译:流化床换热器的传热特性主要受床料运动特性的影响,特别是在传热管的邻近区域。在本实验中,将模拟流化床换热器模型划分为两个通道,以在同一流化床模型中同时形成向上和向下的流动。然后,即使在两个通道之间的空隙率不同时,循环材料的总量也保持在相同的值。通过将中子示踪剂引入流化床中,通过中子射线照相术观察床材料的流动模式。模拟流化床由铝板组成,床料为96%SiO_2的砂(平均粒径:0.154-0.321 mm,密度:2550 kg / m〜3)。床层材料对中子几乎是透明的。相反,由B_4C与粘土制成的直径约1毫米的示踪剂颗粒是不透明的。因此,检测到的示踪剂颗粒足够清晰,可用于PTV(粒子跟踪测速)。然后根据浸没在床中的加热管周围的传热特性讨论了流化床的行为。

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