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国家教育部博士点基金(20050003028)

作品数:2 被引量:15H指数:2
相关作者:吴昌宁程易金涌丁宇龙更多>>
相关机构:清华大学更多>>
发文基金:国家教育部博士点基金国家自然科学基金更多>>
相关领域:化学工程环境科学与工程更多>>

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气固催化反应流动的CFD-DEM模拟研究被引量:4
2008年
针对复杂气固催化反应流动系统,提出一种新的气固催化反应流动的模型框架,即CFD-DEM反应流模型框架,计算流体力学(CFD)方程用于描述气相的流动和传递行为,离散单元法(DEM)用于描述颗粒相的运动。结合石油催化裂化(FCC)过程,考虑颗粒间传热和气固相间传热模型、催化剂颗粒瞬态失活模型以及FCC过程的4集总动力学模型,建立完整的CFD-DEM反应流模型。应用所建模型模拟在不同剂油比操作下高2m,宽0.05m的二维提升管和下行式反应器内的FCC过程。由于能实时追踪各个催化剂颗粒的运动、传热和化学反应行为,模拟结果直接揭示了不同的流动结构和颗粒返混行为对反应器性能(如汽油、焦炭等产物的选择性)的影响。此外,方法论本身可推广至FCC过程以外的气固相催化或非催化过程的精细描述。
吴昌宁丁宇龙金涌程易
关键词:化学反应工程催化裂化催化剂失活
Eulerian-Lagrangian simulation of distinct clustering phenomena and RTDs in riser and downer被引量:11
2010年
Numerical simulation of fully developed hydrodynamics of a riser and a downer was carried out using an Eulerian-Lagrangian model, where the particles are modeled by the discrete element method (DEM) and the gas by the Navier-Stokes equations. Periodic flow domain with two side walls was adopted to simulate the fully developed dynamics in a 2D channel of 10 cm in width. All the simulations were carried out under the same superficial gas velocity and solids holdup in the domain, starting with a homogenous state for both gas and solids, and followed by the evolution of the dynamics to the heterogeneous state with distinct clustering in the riser and the downer. In the riser, particle clusters move slowly, tending to suspend along the wall or to flow downwards, which causes wide residence time distribution of the particles. In the downer, clusters still exist, but they have faster velocities than the discrete particles. Loosely collected particles in the clusters move in the same direction as the bulk flow, resulting in plug flow in the downer. The residence time distribution (RTD) of solids was computed by tracking the displacements of all particles in the flow direction. The results show a rather wide RTD for the solids in the riser hut a sharp peak RTD in the downer, much in agreement with the experimental findings in the literature. The ensemble average of transient dynamics also shows reasonable profiles of solids volume fraction and solids velocity, and their dependence on particle density.
Yongzhi Zhao Yi Cheng Changning Wu Yulong Ding Yong Jin
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