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首页> 外文期刊>Annual review of chemical and biomolecular engineering >From Multiscale to Mesoscience: Addressing Mesoscales in Mesoregimes of Different Levels
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From Multiscale to Mesoscience: Addressing Mesoscales in Mesoregimes of Different Levels

机译:从MultiScale到Mesoscience:在Mesorege中寻址不同层次的Mesoscales

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摘要

This review covers three decades of research on mesoscale phenomena in chemical engineering, from the energy minimization multiscale (EMMS) model specific for gas-solid fluidization to a general principle of compromise in competition between dominant mechanisms, leading to the proposed concept of mesoscience. First, the concept of mesoscales is reviewed with respect to their commonality, diversity, and misunderstanding in different fields. Then, the evolution from the EMMS model to the EMMS principle common to all mesoscales is described to show the rationale of mesoscience referring to both mesoscales and mesoregimes. Finally, the potential universality of mesoscience and its importance, particularly to enable virtual process engineering (VPE) by realizing the consistency of logic and structure between the problem, the model, the software, and the computer, are discussed. The review concludes by illustrating possible case studies to collect more evidence and a potential framework for mesoscience.
机译:本综述涵盖了化学工程中的三十年来研究了化学工程中的Mescrale现象,从最小化多尺度(EMM)模型,用于气固流化的一般原则,以主导机制之间的竞争竞争,导致拟议的培养性概念。首先,在不同领域的平分性,多样性和误解审查了媒介阶段的概念。然后,描述了从EMM模型到所有Mesoscales共同的EMM原理的进化,以表明媒介阶段和中间细长的间隙的理由。最后,讨论了讨论了通过实现问题,模型,软件和计算机之间的逻辑和结构的一致性来实现虚拟过程工程(VPE)的潜在普遍性。审查通过说明可能的案例研究,以收集更多的证据和潜在的培养框架。

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