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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >CFD modeling of space-time evolution of fast pyrolysis products in a bench-scale fluidized-bed reactor
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CFD modeling of space-time evolution of fast pyrolysis products in a bench-scale fluidized-bed reactor

机译:台式规模流化床反应器中快速热解产物时空演化的CFD建模

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摘要

A model for the evolution of pyrolysis products in a fluidized bed has been developed. In this study the unsteady constitutive transport equations for inert gas flow and decomposition kinetics were modeled using the commercial computational fluid dynamics (CFD) software FLUENT-12. The Eulerarian-Eulerian multiphase model system described herein is a fluidized bed of sand externally heated to a predetermined temperature prior to introduction of agricultural biomass. We predict the spontaneous emergence of pyrolysis vapors, char and non-condensable (permanent) gases and confirm the observation that the kinetics are fast and that bio-oil vapor evolution is accomplished in a few seconds, and occupying two-thirds of the spatial volume of the reactor as widely reported in the open literature. The model could be advantageous in the virtual design of fast pyrolysis reactors and their optimization to meet economic scales required for distributed or satellite units.
机译:已经开发了在流化床中热解产物放出的模型。在这项研究中,使用商业计算流体力学(CFD)软件FLUENT-12对惰性气体流动和分解动力学的非定常本构传递方程进行建模。本文所述的欧拉-欧拉多相模型系统是在引入农业生物质之前外部加热至预定温度的沙子的流化床。我们预测了热解蒸气,焦炭和不凝性(永久性)气体的自发出现,并确认以下观察结果:动力学快速,并且生物油蒸气在几秒钟内完成分解,并占据了空间的三分之二开放文献中广泛报道了该反应堆的结构。该模型在快速热解反应器的虚拟设计及其优化以满足分布式或卫星装置所需的经济规模方面可能是有利的。

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