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首页> 外文期刊>Frontiers in Mechanical Engineering >Effect of Particle Type on Cyclone Formation Inside a Solar Reactor
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Effect of Particle Type on Cyclone Formation Inside a Solar Reactor

机译:粒子类型对太阳能反应器内旋风分离器形成的影响

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Solar reactors featuring a circulating cyclone flow pattern provide enhanced heat transfer and longer residence time increasing conversion efficiency. Cyclone flow also works in reducing particle deposition on solar reactor walls and exit which is particularly important issue in solar cracking reactors to avoid clogging. This paper focuses on the physics of cyclone formation inside a solar cracking reactor and experimentally analyzes the effect of particle entrainment on the flow pattern via two dimensional Particle Image Velocimetry (PIV). The cyclone flow structure in the reactor is reconstructed by capturing images from orientations perpendicular or parallel to the geometrical axis of the reactor. In order to conduct PIV measurements and to reconstruct the cyclone structure inside the solar reactor, the experiment was operated at room temperature with the flow configuration matching that of a solar reactor operating at high temperatures. Two types of seeding particles were tested, namely tri-ethylene glycol (TEG) and solid carbon. The effectiveness of the screening flow was evaluated by measuring the quantity of solid particles deposit on the reactor walls. The Stokes flow analysis of each particle species was performed and the cyclone vector fields generated by using different particles are compared.
机译:具有循环旋流器流动模式的太阳能反应堆提供了增强的热传递和更长的停留时间,从而提高了转化效率。旋风流还有助于减少在太阳能反应器壁和出口上的颗粒沉积,这在太阳能裂化反应器中避免堵塞特别重要。本文着眼于太阳能裂解反应器内旋风形成的物理原理,并通过二维粒子图像测速(PIV)实验分析了粒子夹带对流型的影响。通过从垂直于或平行于反应器几何轴的方向捕获图像来重建反应器中的旋风流动结构。为了进行PIV测量并重建太阳能反应器内部的旋风器结构,实验在室温下进行,其流动构型与在高温下运行的太阳能反应器相匹配。测试了两种类型的播种颗粒,即三甘醇(TEG)和固体碳。通过测量沉积在反应器壁上的固体颗粒的数量来评估筛选流的有效性。对每种粒子进行斯托克斯流分析,并比较使用不同粒子产生的旋风矢量场。

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