Computational Fluids Dynamic Modeling For Underground Mines


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Computational Fluids Dynamic Modeling for Underground Mines


Computational Fluids Dynamic Modeling for Underground Mines

Author: Jürgen F. Brune

language: en

Publisher:

Release Date: 2014


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A better understanding is needed of the exact behavior of longwall ventilation--specifically, the ventilation of bleeder and bleederless gobs, where flammable or explosive concentrations of methane are known to exist. This research expands on previous work on computational fluid dynamics (CFD) modeling and uses FLUENT code to develop a modeling and predictive tool for mine ventilation.

Life Cycle & Technoeconomic Modeling


Life Cycle & Technoeconomic Modeling

Author: Antonio Colmenar Santos

language: en

Publisher: MDPI

Release Date: 2020-12-02


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This book aims to perform an impartial analysis to evaluate the implications of the environmental costs and impacts of a wide range of technologies and energy strategies. This information is intended to be used to support decision-making by groups, including researchers, industry, regulators, and policy-makers. Life cycle assessment (LCA) and technoeconomic analysis can be applied to a wide variety of technologies and energy strategies, both established and emerging. LCA is a method used to evaluate the possible environmental impacts of a product, material, process, or activity. It assesses the environmental impact throughout the life cycle of a system, from the acquisition of materials to the manufacture, use, and final disposal of a product. Technoeconomic analysis refers to cost evaluations, including production cost and life cycle cost. Often, in order to carry out technoeconomic analysis, researchers are required to obtain data on the performance of new technologies that operate on a very small scale in order to subsequently design configurations on a commercial scale and estimate the costs of such expansions. The results of the developed models help identify possible market applications and provide an estimate of long-term impacts. These methods, together with other forms of decision analysis, are very useful in the development and improvement of energy objectives, since they will serve to compare different decisions, evaluating their political and economic feasibility and providing guidance on potential financial and technological risks.

CFD Modeling of Complex Chemical Processes


CFD Modeling of Complex Chemical Processes

Author: Li Xi

language: en

Publisher: MDPI

Release Date: 2021-09-01


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Computational fluid dynamics (CFD), which uses numerical analysis to predict and model complex flow behaviors and transport processes, has become a mainstream tool in engineering process research and development. Complex chemical processes often involve coupling between dynamics at vastly different length and time scales, as well as coupling of different physical models. The multiscale and multiphysics nature of those problems calls for delicate modeling approaches. This book showcases recent contributions in this field, from the development of modeling methodology to its application in supporting the design, development, and optimization of engineering processes.