Fr. 300.00

Optimization of Industrial Systems

Inglese · Copertina rigida

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OPTIMIZATION of INDUSTRIAL SYSTEMS
 
Including the latest industrial solution-based practical applications, this is the most comprehensive and up-to-date study of the optimization of industrial systems for engineers, scientists, students, and other professionals.
 
In order to deal with societal challenges, novel technologies play an important role. For the advancement of technology, it is essential to share innovative ideas and thoughts on a common platform where researchers across the globe meet together and revitalize their knowledge and skills to tackle the challenges that the world faces. The high complexity of the issues related to societal interdisciplinary research is the key to future revolutions. From research funders to journal editors, policymakers to think tanks, all seem to agree that the future of research lies outside disciplinary boundaries. In such prevailing conditions, various working scenarios, conditions, and strategies need to be optimized.
 
Optimization is a multidisciplinary term, and its essence can be inculcated in any domain of business, research, and other associated working dynamics. Globalization provides all-around development, and this development is impossible without technological contributions. This volume's mission is at the core of industrial engineering. All the manuscripts appended in this volume were double-blind peer-reviewed by committee members and the review team, promising high-quality research. This book provides deep insights to its readers about the current scenarios and future advancements of industrial engineering.

Sommario

1 Speed Control of DC Motor at Variable Load Torque Using FLC 1
Kbrom Lbsu, Selomone Fantaye and Fisseha Teklay
 
1.1 Introduction 1
 
1.2 Background of Thesis Work 2
 
1.3 Statement of the Problem (Case Study) 2
 
1.4 Research Methods 3
 
1.5 Mathematical Model of DC Motor 5
 
1.6 Results and Discussion 7
 
1.7 Conclusion 9
 
References 10
 
2 Detailing and Analysis of Factors Governing Inventory in Dynamics of Food Supply Chain Performance System 11
Janpriy Sharma, Mohit Tyagi and Arvind Bhardwaj
 
2.1 Introduction 11
 
2.2 Literature Review 13
 
2.3 Methodology 14
 
2.4 Results and Discussions 25
 
2.5 Work Implications and Future Avenues 26
 
References 26
 
3 Risk Factor Appraisal in Cold Supply Chain Performance System through Delphi Based Hybrid MCDM Approach 31
Neeraj Kumar, Mohit Tyagi and Anish Sachdeva
 
3.1 Introduction and Background 31
 
3.2 Model Development (First Segment) 33
 
3.3 Research Methodology 34
 
3.4 Numerical Illustrations 38
 
3.5 Results and Discussion 41
 
3.6 Managerial Implication and Future Scope 43
 
References 43
 
4 Exploring Interaction Among Barriers of Circular Supply Chains: A Case of Indian Rubber Industry 45
Somesh Agarwal, Mohit Tyagi and R.K. Garg
 
4.1 Introduction 45
 
4.2 Literature Survey 46
 
4.3 Methodology 49
 
4.4 Results and Discussion 56
 
4.5 Conclusion and Future Scope 57
 
4.6 Limitation of Study and Future Scope 58
 
References 58
 
5 Power Spectral Density Analysis of HRV to Evaluate Changes in ANS During Graded Head-Up Tilt and Head-Reverse Tilt 61
Anjali Sharma and Dilbag Singh
 
5.1 Introduction 61
 
5.2 Materials and Methods 62
 
5.3 Results and Discussion 67
 
5.4 Conclusion 71
 
References 71
 
6 Mathematical Modeling for Catalytic Combustion of Volatile Organic Compound (VOC) Methane During Warm-Up Behaviour in Catalytic Converter 73
Umang Bedi and Sanchita Chauhan
 
6.1 Introduction 73
 
6.2 Rate Kinetics 74
 
6.3 Modeling 74
 
6.4 Methodology to Solve Dimensionless Equations 76
 
6.5 Result and Discussions 76
 
6.5 Conclusion 81
 
6.6 Acknowledgments 82
 
Nomenclature 82
 
References 83
 
7 Numerical Investigation of Two-Phase Flow in a Horizontal T Junction 85
Parth Patpatiya, Sreejita Samadder and Vanshika Kapoor
 
7.1 Introduction 85
 
7.2 Literature Review 86
 
7.3 Methodology 90
 
7.4 Results and Discussions 92
 
7.5 Conclusion 98
 
References 98
 
8 Studies on Design of Flexible Pavement Using Resilient Modulus: A Review 101
Ashish Pratap Singh, Mayank Pathak, Rajiv Kumar and Kanish Kapoor
 
8.1 Introduction 101
 
8.2 Resilient Modulus 103
 
8.3 Importance of Subgrade Resilient Modulus 103
 
8.4 Effect On Pavement Design 104
 
8.5 Seasonal Variations 106
 
8.6 Changes in Water Content Have an Effect on Resilient Modulus 106
 
8.7 Perspective on Resilient Modulus 107
 
8.8 Conclusion 107
 
References 108
 
9 Study on Design of Top Shackle used in Cage Suspension Gear in Mines - FEA Approach 111
Shivam Jaiswal
 
9.1 Introduction 111
 
9.2 Research Background 113
 
9.3 Research Methods 114
 
9.4 Finite Element Analysis 115
 
9.5 Analysis and Result 120
 
9.6 Conclusion 122
 
9.7 Acknowledgement 123
 
References 123
 
10 A Review on

Info autore










Dilbagh Panchal, PhD, is an assistant professor in the Department of Industrial and Production Engineering, Dr. B R Ambedkar National Institute of Technology Jalandhar, Punjab, India. He earned his PhD from the Indian Institute of Technology Roorkee, India. He has published 22 research papers in scientific journals, ten book chapters in various books, and he has edited two books. He is a reviewer for several scientific journals, and he is currently working on seven books, including books for Scrivener Publishing.
Mohit Tyagi, PhD, is an assistant professor in the Department of Industrial and Production Engineering at Dr. B. R. Ambedkar National Institute of Technology Jalandhar, India. He earned his PhD from the Indian Institute of Technology, Roorkee, India, and he has over seven years of teaching and research experience. He has roughly 75 publications in scientific journals and has numerous conference proceedings and book chapters to his credit. He is a reviewer for many technical journals and has organized three international conferences. Anish Sachdeva, PhD, is an associate professor in the Department of Industrial and Production Engineering at Dr. B.R. Ambedkar National Institute of Technology, Jalandhar, Punjab, India. He received his PhD from IIT Roorkee and has published more than 100 research articles in scientific journals and conferences. He is a peer reviewer for numerous journals, acts as session chair in many international conferences, and conducts a number of training programs. He has organized five international conferences at NIT Jalandhar as organizing secretary and convener. Dragan Pamucar, PhD, is an associate professor and earned his PhD from the University of Defence in Belgrade, Serbia. He has authored or co-authored over 50 papers in numerous scientific and technical journals, and, in 2017, he was awarded the top and outstanding reviewer award for his reviews in these journals.

Riassunto

OPTIMIZATION of INDUSTRIAL SYSTEMS

Including the latest industrial solution-based practical applications, this is the most comprehensive and up-to-date study of the optimization of industrial systems for engineers, scientists, students, and other professionals.

In order to deal with societal challenges, novel technologies play an important role. For the advancement of technology, it is essential to share innovative ideas and thoughts on a common platform where researchers across the globe meet together and revitalize their knowledge and skills to tackle the challenges that the world faces. The high complexity of the issues related to societal interdisciplinary research is the key to future revolutions. From research funders to journal editors, policymakers to think tanks, all seem to agree that the future of research lies outside disciplinary boundaries. In such prevailing conditions, various working scenarios, conditions, and strategies need to be optimized.

Optimization is a multidisciplinary term, and its essence can be inculcated in any domain of business, research, and other associated working dynamics. Globalization provides all-around development, and this development is impossible without technological contributions. This volume's mission is at the core of industrial engineering. All the manuscripts appended in this volume were double-blind peer-reviewed by committee members and the review team, promising high-quality research. This book provides deep insights to its readers about the current scenarios and future advancements of industrial engineering.

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