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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Hierarchical calibration and validation of computational fluid dynamics models for solid sorbent-based carbon capture
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Hierarchical calibration and validation of computational fluid dynamics models for solid sorbent-based carbon capture

机译:用于基于固体吸附剂的碳捕集的计算流体动力学模型的分层校准和验证

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摘要

To quantify the predictive confidence of a device scale solid sorbent-based carbon capture design where there is no direct experimental data available,,a hierarchical validation methodology-is first proposed. In this hierarchy, a sequence of increasingly complex "unit problems" are validated using a statistical calibration framework. This paper describes the computational fluid dynamics (CFD) multi-phase reactive flow simulations and the associated data flows within each unit problem. Each validation requires both simulated and physical data, so the bench-top experiments used in each increasingly complex stage were carefully designed to follow the same operating conditions as the simulation scenarios. A Bayesian calibration procedure is employed and the posterior model parameter distributions obtained at one unit-problem level are used as prior distributions for the same parameters in the next-tier simulations. Overall, the results have demonstrated that the calibrated multiphase reactive flow models within MFIX can be used to capture the bed pressure, temperature, CO2 capture capacity, and kinetics with quantitative accuracy. The CFD modeling methodology and associated uncertainty quantification techniques presented herein offer a solid framework for estimating the predictive confidence in the virtual scale up of a larger carbon capture device. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了量化没有直接实验数据的设备规模基于固体吸附剂的碳捕集设计的预测可信度,首先提出了一种分层验证方法。在此层次结构中,使用统计校准框架验证了一系列日益复杂的“单元问题”。本文介绍了计算流体力学(CFD)多相反应流模拟以及每个单元问题内的相关数据流。每次验证都需要模拟和物理数据,因此,在日益复杂的每个阶段中使用的台式实验都经过精心设计,以遵循与模拟场景相同的操作条件。采用贝叶斯校准程序,在一个单元问题级别上获得的后验模型参数分布用作下一阶段仿真中相同参数的先验分布。总体而言,结果表明,MFIX中经过校准的多相反应流模型可用于以定量精度捕获床压,温度,CO2捕获能力和动力学。本文介绍的CFD建模方法论和相关的不确定性量化技术提供了一个坚实的框架,可用于估算较大碳捕集装置虚拟放大过程中的预测置信度。 (C)2015 Elsevier B.V.保留所有权利。

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