This book covers emerging areas in novel design and their hydrodynamic properties relevant to bioreactors, environmental system, electrochemical systems, food processing and biomedical engineering. This book uses an interdisciplinary approach to provide a comprehensive prospective simulation modeling and hydrodynamic study in advanced biotechnological process and includes reviews of the most recent state of art in modeling and simulation of flows in biological process, such as CFD. Written by internationally recognized researchers in the field, each chapter provides a strong introductory…mehr
This book covers emerging areas in novel design and their hydrodynamic properties relevant to bioreactors, environmental system, electrochemical systems, food processing and biomedical engineering. This book uses an interdisciplinary approach to provide a comprehensive prospective simulation modeling and hydrodynamic study in advanced biotechnological process and includes reviews of the most recent state of art in modeling and simulation of flows in biological process, such as CFD. Written by internationally recognized researchers in the field, each chapter provides a strong introductory section that is useful to both readers currently in the field and readers interested in learning more about these areas.
Dr. J. Satya Eswari is currently an assistant professor for more than 8 years and at the Biotechnology Department of National Institute of Technology (NIT), Raipur, India. She did her M.Tech. in Biotechnology from Indian Institute Technology (IIT) Kharagpur and Ph.D. from IIT Hyderabad. During her research career, she worked as a scientist (woman scientist-Department of science and technology (DST)) in the Indian Institute of Chemical Technology (IICT) Hyderabad. She is the guest editor for the journal Indian Journal of Biochemistry and Biophysics (SCI) and Journal of chemical technology and biotechnology. She has rigorously pursued her research in the areas of environmental bioremediation, wastewater treatment, bioprocess, and product development and bioinformatics. She gained pioneering expertise in the application of mathematical and engineering tools to biotechnological process, received IEI young engineer award, outstanding woman by Venus international, DK Best faculty award. Mr. Tukendra Kumar is a research scholar at NIT Raipur. He is a DBT JRF fellow. Also he has qualified CSIR NET 2019 life science, GATE Biotechnology and Life Science, ICAR Agriculture Biotechnology, CGPSC Assistant Professors Botany, and CGSET exam. Dr. Sharda Gupta is currently contract faculty at Biomedical Department of National Institute of Technology (NIT), Raipur, India. She is recipient of Chhattisgarh Young Scientist Award 2023. She has received doctorate degree (2022) from National Institute of Technology, Raipur. She is GATE fellow (2012) and was University Topper in her master degree (2014) from School of Instrumentation, DAVV Indore. In her master's project she worked on temperature monitoring and data logging in CRYOGENICS Using LabVIEW at Cryo-engineering and Cryo-module Development Division (CCDS), RRCAT INDORE, Department of Atomic Energy, Government of India. She is a reviewer to many journals and has authored more than ten articlesin peer reviewed journal, seven book chapters and two patents are under review. She is actively engaged in multi-disciplinary research involving frontier areas of skin tissue engineering, 3D skin disease models, microfluidic chip, use of silk-based biomaterials, 3D printing and implementation of electronics in the field of biology in the form of biosensors.
Inhaltsangabe
1: An Introduction to Computational Fluid Dynamic Modelling in Biotechnological Applications.- 2. An assessment of computational fluid dynamic modelling in Microbial Fuel Cell.- 3. Computational fluid dynamic Modelling study in an up flow microbial fuel cell.- 4.Performance enhancement of microbial fuel cells using Computational fluid dynamic analysis.- 5. Analysis of Multi-physics in Tubular Microbial fuel cells Coupled with Computational fluid Dynamics Modelling.- 6.Computational Fluid Dynamics Modeling of Proton Exchange Membrane based Electrochemical System.- 7. Computational Fluid Dynamics Modeling of Proton Exchange Membrane based Electrochemical System.- 8. Computational Fluid Dynamics in Biomedical applications.- 9. Computational Fluid Dynamics analysis in Food process engineering.- 10. Computational Fluid Dynamics evaluation for wastewater treatment.
1: An Introduction to Computational Fluid Dynamic Modelling in Biotechnological Applications.- 2. An assessment of computational fluid dynamic modelling in Microbial Fuel Cell.- 3. Computational fluid dynamic Modelling study in an up flow microbial fuel cell.- 4.Performance enhancement of microbial fuel cells using Computational fluid dynamic analysis.- 5. Analysis of Multi-physics in Tubular Microbial fuel cells Coupled with Computational fluid Dynamics Modelling.- 6.Computational Fluid Dynamics Modeling of Proton Exchange Membrane based Electrochemical System.- 7. Computational Fluid Dynamics Modeling of Proton Exchange Membrane based Electrochemical System.- 8. Computational Fluid Dynamics in Biomedical applications.- 9. Computational Fluid Dynamics analysis in Food process engineering.- 10. Computational Fluid Dynamics evaluation for wastewater treatment.
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