
Hydrodynamic Cavitation
Devices, Design, and Applications
Wiley-VCH (Publisher)
1st Edition
Published on 16. November 2022
Book
Hardback
352 pages
978-3-527-34643-1 (ISBN)
Description
Provides an up-to-date exploration of emerging innovations and future applications of the hydrodynamic cavitation technology.
More details
Edition
1. Auflage
Language
English
Place of publication
Berlin
Germany
Target group
Professional and scholarly
Illustrations
33
30 farbige Abbildungen, 30 s/w Tabellen, 100 s/w Abbildungen
Dimensions
Height: 24.4 cm
Width: 17 cm
Thickness: 2.3 cm
Weight
642 gr
ISBN-13
978-3-527-34643-1 (9783527346431)
Schweitzer Classification
Other editions
Additional editions

Vivek V. Ranade | Vinay M. Bhandari | Sanjay Nagarajan
Hydrodynamic Cavitation
Devices, Design, and Applications
E-Book
10/2022
1st Edition
Wiley-VCH
€138.99
Available for download

Vivek V. Ranade | Vinay M. Bhandari | Sanjay Nagarajan
Hydrodynamic Cavitation
Devices, Design, and Applications
E-Book
10/2022
1st Edition
Wiley-VCH
€138.99
Available for download
Persons
Vivek V. Ranade is Bernal Chair of Process Engineering at University of Limerick, Ireland and leads "multiphase reactors and intensification group" (https://www.ul.ie/bernal-mring/). His research is focused on developing sustainable and scalable solutions for energy, water, and chemicals using data, models and devices
Vinay M. Bhandari is a Chief Scientist and Professor-AcSIR at Chemical Engineering & Process Development Division, CSIR-National Chemical Laboratory, Pune, India. His research interests include chemical and environmental engineering, advanced separation processes and industrial wastewater treatment, recycle and reuse.
Sanjay Nagarajan is a Research Fellow at Sustainable Environment Research Centre, University of South Wales. His research focuses on harnessing hydrodynamic cavitation and other advanced oxidation processes for intensifying anaerobic digestion and for developing bio-refinery applications.
Varaha P. Sarvothaman, is a postdoctoral researcher at the School of Chemistry and Chemical Engineering, Queens University of Belfast, Belfast, UK. His research is on harnessing hydrodynamic cavitation for variety of applications including water treatment, biomass pre-treatment and oxidative desulphurization of liquid fuels.
Alister Simpson, PhD, is a principal engineering consultant working for Wilde Analysis Ltd. in Manchester UK, providing technical consultancy services in the areas of advanced CFD and FEA for clients across the chemical process, power and energy industries. He is a Chartered Engineer and over 15 years? experience in multiphase flow applications.
Vinay M. Bhandari is a Chief Scientist and Professor-AcSIR at Chemical Engineering & Process Development Division, CSIR-National Chemical Laboratory, Pune, India. His research interests include chemical and environmental engineering, advanced separation processes and industrial wastewater treatment, recycle and reuse.
Sanjay Nagarajan is a Research Fellow at Sustainable Environment Research Centre, University of South Wales. His research focuses on harnessing hydrodynamic cavitation and other advanced oxidation processes for intensifying anaerobic digestion and for developing bio-refinery applications.
Varaha P. Sarvothaman, is a postdoctoral researcher at the School of Chemistry and Chemical Engineering, Queens University of Belfast, Belfast, UK. His research is on harnessing hydrodynamic cavitation for variety of applications including water treatment, biomass pre-treatment and oxidative desulphurization of liquid fuels.
Alister Simpson, PhD, is a principal engineering consultant working for Wilde Analysis Ltd. in Manchester UK, providing technical consultancy services in the areas of advanced CFD and FEA for clients across the chemical process, power and energy industries. He is a Chartered Engineer and over 15 years? experience in multiphase flow applications.
Author
ISNI: 0000 0005 1580 5263
ISNI: 0000 0005 2794 9619
ISNI: 0000 0005 2794 9627
ISNI: 0000 0005 2794 9635
ISNI: 0000 0005 2794 9643
Content
1. Hydrodynamic Cavitation
2. Hydrodynamic Cavitation Devices based on Axial/ Linear flow
3. Hydrodynamic Cavitation Devices based on Rotational/ Swirling Flows
4. Experimental Characterisation of Hydrodynamic Cavitation Devices
5. Modelling of Hydrodynamic Cavitation based Processes
6. Disinfection of Water
7. Wastewater Treatment
8. Pre-treatment of Biomass for Enhancing Biofuel Yields
9. Other Applications of Hydrodynamic Cavitation
2. Hydrodynamic Cavitation Devices based on Axial/ Linear flow
3. Hydrodynamic Cavitation Devices based on Rotational/ Swirling Flows
4. Experimental Characterisation of Hydrodynamic Cavitation Devices
5. Modelling of Hydrodynamic Cavitation based Processes
6. Disinfection of Water
7. Wastewater Treatment
8. Pre-treatment of Biomass for Enhancing Biofuel Yields
9. Other Applications of Hydrodynamic Cavitation