首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference;AJK2011 >NUMERICAL ANALYSIS OF TWO-PHASE FLOW IN FLUIDIZED BED REACTOR WITH JET NOZZLE FOR POLYSILICON GROWTH
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NUMERICAL ANALYSIS OF TWO-PHASE FLOW IN FLUIDIZED BED REACTOR WITH JET NOZZLE FOR POLYSILICON GROWTH

机译:射流喷嘴流化床反应器内多晶硅生长两相流的数值分析

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The present study has been conducted on three dimensional flow characteristics between poly-silicon particles and gas in a large scale fluidization bed reactor (FBR). This study was mainly performed numerically by commercial code Fluent. The Eulerian multiphase model was used to simulate hydrodynamics of bubbling fluidized bed. The size of silicon particle was 1000 μm and 2000 μm, and density was 2329 kg/m3. The reactor chamber had base gas flow from bottom porous plate and reacting flow from the jet nozzles (single or multi) with high velocity. The base gas and reacting gas were hydrogen (H2) and trichloro-silane (TCS) respectively. The TCS mole fraction was controlled to 13% and 20% of total gas amount. From the simulation, performance and design parameters were evaluated on single and multi nozzles jet related to flow mixing characteristics and a gas-solid contact performance. As a result, considering of the mixing characteristics between the gas and the solid, multi nozzle jets much improved the mixing performance in the reacting zone. In addition, the widespread distribution of TCS which led to better gas-solid contact performance were showed by the multi nozzle jets. This CFD data will provide useful basis to predict fluidization characteristics in the poly-silicon FBR process.
机译:本研究已在大型流化床反应器(FBR)中对多晶硅颗粒与气体之间的三维流动特性进行了研究。这项研究主要是通过商业代码Fluent进行的。使用欧拉多相模型模拟鼓泡流化床的流体动力学。硅颗粒的尺寸为1000μm和2000μm,并且密度为2329kg / m 3。反应器室具有来自底部多孔板的基础气体流和来自喷嘴(单个或多个)的高速反应流。基础气体和反应气体分别为氢气(H2)和三氯硅烷(TCS)。 TCS摩尔分数控制为总气体量的13%和20%。通过仿真,对与混合特性和气固接触性能有关的单喷嘴和多喷嘴喷嘴的性能和设计参数进行了评估。结果,考虑到气体和固体之间的混合特性,多喷嘴射流大大改善了反应区中的混合性能。此外,多喷嘴射流显示出TCS的广泛分布,导致更好的气固接触性能。此CFD数据将为预测多晶硅FBR工艺中的流化特性提供有用的基础。

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