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Thermal Effects of High Power Laser Energy on Materials (Hardcover, 1st ed. 2021): Bahman Zohuri Thermal Effects of High Power Laser Energy on Materials (Hardcover, 1st ed. 2021)
Bahman Zohuri
R4,390 Discovery Miles 43 900 Ships in 12 - 17 working days

This book offers a tutorial on the response of materials to lasers, with an emphasis on simple, intuitive models with analytical and mathematical solutions, using techniques such as Laplace Transformation to solve most complex heat conduction equations. It examines the relationship between existing thermal parameters of simple metals and looks at the characteristics of materials and their properties in order to investigate and perform theoretical analysis from a heat conduction perspective mathematically. Topics discussed include optical reflectivity of metals at infrared (IR) wavelengths, laser-induced heat flow in materials, the effects of melting and vaporization, the impulse generated in materials by pulsed radiation, and the influence of the absorption in the blow-off region in irradiated material. Written for engineers, scientists, and graduate-level engineering and physics students, Thermal Effects of High Power Laser Energy on Materials provides an in-depth look at high energy laser technology and its potential industrial and commercial applications in such areas as precision cutting, LIDAR and LADAR, and communications. The knowledge gained from this allows you to apply spaced-based relay mirror in order to compensate laser beam divergence back to its original coherency by preventing further thermal blooming that takes place during laser beam propagation through the atmosphere. Examines the state-of-the-art in currently available high energy laser technologies; Includes computer codes that deal with the response of materials to laser radiation; Provides detailed mathematical solutions of thermal response to laser radiation.

Advanced Smaller Modular Reactors - An Innovative Approach to Nuclear Power (Hardcover, 1st ed. 2019): Bahman Zohuri, Patrick... Advanced Smaller Modular Reactors - An Innovative Approach to Nuclear Power (Hardcover, 1st ed. 2019)
Bahman Zohuri, Patrick McDaniel
R3,713 Discovery Miles 37 130 Ships in 12 - 17 working days

This book discusses advanced Small Modular Reactors (SMRs) as a way to provide safe, clean, and affordable nuclear power options. The advanced SMRs currently under development in the U.S. represent a variety of sizes, technology options and deployment scenarios. These advanced reactors, envisioned to vary in size from a couple megawatts up to hundreds of megawatts can be used for power generation, process heat, desalination, or other industrial uses. In-depth chapters describe how advanced SMRs offer multiple advantages, such as relatively small size, reduced capital investment, location flexibility, and provisions for incremental power additions. SMRs also offer distinct safeguards, security and nonproliferation advantages. The authors present a thorough examination of the technology and defend methods by which the new generation of nuclear power plants known as GEN-IV can safely be used as an efficient source of renewable energy. Provides a unique and innovative approach to the implementation of Small Modular Reactor as part of GEN-IV technology; Discusses how Small Modular Reactors (SMRs) can deliver a viable alternative to Nuclear Power Plants (NPPs); Presents an argument defending the need for nuclear power plant as a source of energy, its efficiency and cost effectiveness, as well as safety related issues.

Small Modular Reactors as Renewable Energy Sources (Hardcover, 1st ed. 2019): Bahman Zohuri Small Modular Reactors as Renewable Energy Sources (Hardcover, 1st ed. 2019)
Bahman Zohuri
R3,544 Discovery Miles 35 440 Ships in 10 - 15 working days

This book highlights Small Modular Reactors (SMRs) as a viable alternative to the Nuclear Power Plants (NPPs), which have been used as desalination plant energy sources. SMRs have lower investment costs, inherent safety features, and increased availability compared to NPPs. The unique and innovative approach to implementation of SMRs as part of Gen-IV technology outlined in this book contributes to the application of nuclear power as a supplementary source to renewable energy. Discusses Gen-IV Power plants, their efficiency, cost effectiveness, safety, and methods to supply renewable energy; Presents Small Modular Reactors as a viable alternative to Nuclear Power Plants; Describes the benefits, uses, safety features, and challenges related to implementation of Small Modular Reactors.

Heat Pipe Applications in Fission Driven Nuclear Power Plants (Hardcover, 1st ed. 2019): Bahman Zohuri Heat Pipe Applications in Fission Driven Nuclear Power Plants (Hardcover, 1st ed. 2019)
Bahman Zohuri
R4,713 Discovery Miles 47 130 Ships in 12 - 17 working days

This book presents a new and innovative approach for the use of heat pipes and their application in a number of industrial scenarios, including space and nuclear power plants. The book opens by describing the heat pipe and its concept, including sizing, composition and binding energies. It contains mathematical models of high and low temperature pipes along with extensive design and manufacturing models, characteristics and testing programs. A detailed design and safety analysis concludes the book, emphasizing the importance of heat pipe implementation within the main cooling system and within the core of the reactor, making this book a useful resource for students, engineers, and researchers.

Directed Energy Weapons - Physics of High Energy Lasers (HEL) (Hardcover, 1st ed. 2016): Bahman Zohuri Directed Energy Weapons - Physics of High Energy Lasers (HEL) (Hardcover, 1st ed. 2016)
Bahman Zohuri
R7,421 Discovery Miles 74 210 Ships in 12 - 17 working days
Magnetic Confinement Fusion Driven Thermonuclear Energy (Hardcover, 1st ed. 2017): Bahman Zohuri Magnetic Confinement Fusion Driven Thermonuclear Energy (Hardcover, 1st ed. 2017)
Bahman Zohuri
R4,001 Discovery Miles 40 010 Ships in 12 - 17 working days

This book covers the principles and practices behind the Magnetic Confinement Fusion (MCF) approach to driven new source of energy. All possible technical methods, including well established theoretical research, as well as findings tested in an experimental tokamak reactor, are examined in order to determine how to best achieve breakeven via this pathway to plasma-driven fusion. The author undertakes a life cycle analysis to compare and contrast the efficiency, environmental impacts, and operating costs of plasma-driven MCF fusion against other forms of energy generation currently in widespread use. The associated computer code and numerical analysis are included in the book. No prior knowledge of MCF and no more than basic background in plasma physics is required.

Hydrogen Energy - Challenges and Solutions for a Cleaner Future (Hardcover, 1st ed. 2019): Bahman Zohuri Hydrogen Energy - Challenges and Solutions for a Cleaner Future (Hardcover, 1st ed. 2019)
Bahman Zohuri
R3,720 Discovery Miles 37 200 Ships in 12 - 17 working days

This book describes the challenges and solutions the energy sector faces by shifting towards a hydrogen based fuel economy. The most current and up-to-date efforts of countries and leaders in the automotive sector are reviewed as they strive to develop technology and find solutions to production, storage, and distribution challenges. Hydrogen fuel is a zero-emission fuel when burned with oxygen and is often used with electrochemical cells, or combustion in internal engines, to power vehicles and electric devices. This book offers unique solutions to integrating renewable sources of energy like wind or solar power into the production of hydrogen fuel, making it a cost effective, efficient and truly renewable alternative fuel.

Dimensional Analysis and Self-Similarity Methods for Engineers and Scientists (Hardcover, 2015 ed.): Bahman Zohuri Dimensional Analysis and Self-Similarity Methods for Engineers and Scientists (Hardcover, 2015 ed.)
Bahman Zohuri
R4,198 R3,551 Discovery Miles 35 510 Save R647 (15%) Ships in 12 - 17 working days

This ground-breaking reference provides an overview of key concepts in dimensional analysis, and then pushes well beyond traditional applications in fluid mechanics to demonstrate how powerful this tool can be in solving complex problems across many diverse fields. Of particular interest is the book's coverage of dimensional analysis and self-similarity methods in nuclear and energy engineering. Numerous practical examples of dimensional problems are presented throughout, allowing readers to link the book's theoretical explanations and step-by-step mathematical solutions to practical implementations.

High Energy Laser (HEL) - Tomorrow's Weapon in Directed Energy Weapons Volume I (Hardcover): Bahman Zohuri High Energy Laser (HEL) - Tomorrow's Weapon in Directed Energy Weapons Volume I (Hardcover)
Bahman Zohuri
R604 Discovery Miles 6 040 Ships in 12 - 17 working days
Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants - An Innovative Design Approach (Hardcover, 2nd ed.... Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants - An Innovative Design Approach (Hardcover, 2nd ed. 2018)
Bahman Zohuri, Patrick McDaniel
R4,329 Discovery Miles 43 290 Ships in 10 - 15 working days

The second edition of this book includes the most up-to-date details on the advantages of Nuclear Air-Brayton Power Plant Cycles for advanced reactors. It demonstrates significant advantages for typical sodium cooled reactors and describes how these advantages will grow as higher temperature systems (molten salts) are developed. It also describes how a Nuclear Air-Brayton system can be integrated with significant renewable (solar and wind) energy systems to build a low carbon grid. Starting with basic principles of thermodynamics as applied to power plant systems, it moves on to describe several types of Nuclear Air-Brayton systems that can be employed to meet different requirements. It provides estimates of component sizes and performance criteria for Small Modular Reactors (SMR). This book has been revised to include updated tables and significant new results that have become available for intercooled systems in the time since the previous edition published. In this edition also, the steam tables have been updated and Chapters 9 and 10 have been rewritten to keep up with the most up-to- date technology and current research.

Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants - An Innovative Design Approach (Hardcover, 2015... Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants - An Innovative Design Approach (Hardcover, 2015 ed.)
Bahman Zohuri
R3,546 Discovery Miles 35 460 Ships in 12 - 17 working days

Introduces the concept of combined cycles for next generation nuclear power plants, explaining how recent advances in gas turbines have made these systems increasingly desirable for efficiency gains and cost-of-ownership reduction. Promulgates modelling and analysis techniques to identify opportunities for increased thermodynamic efficiency and decreased water usage over current Light Water Reactor (LWR) systems. Examines all power conversion aspects, from the fluid exiting the reactor to energy releases into the environment, with special focus on heat exchangers and turbo-machinery. Provides examples of small projects to facilitate nuanced understanding of the theories and implementation of combined-cycle nuclear plants. This book explores combined cycle driven efficiency of new nuclear power plants and describes how to model and analyze a nuclear heated multi-turbine power conversion system operating with atmospheric air as the working fluid. The included studies are intended to identify paths for future work on next generation nuclear power plants (GEN-IV), leveraging advances in natural-gas-fired turbines that enable coupling salt-cooled, helium-cooled, and sodium-cooled reactors to a Nuclear Air-Brayton Combined Cycle (NACC). These reactors provide the option of operating base-load nuclear plants with variable electricity output to the grid using natural gas or stored heat to produce peak power. The author describes overall system architecture, components and detailed modelling results of Brayton-Rankine Combined Cycle power conversion systems and Recuperated Brayton Cycle systems, since they offer the highest overall energy conversion efficiencies. With ever-higher temperatures predicted in GEN-IV plants, this book's investigation of potential avenues for thermodynamic efficiency gains will be of great interest to nuclear engineers and researchers, as well as power plant operators and students.

Nuclear Energy for Hydrogen Generation through Intermediate Heat Exchangers - A Renewable Source of Energy (Hardcover, 1st ed.... Nuclear Energy for Hydrogen Generation through Intermediate Heat Exchangers - A Renewable Source of Energy (Hardcover, 1st ed. 2016)
Bahman Zohuri
R4,239 R3,591 Discovery Miles 35 910 Save R648 (15%) Ships in 12 - 17 working days

This book describes recent technological developments in next generation nuclear reactors that have created renewed interest in nuclear process heat for industrial applications. The author's discussion mirrors the industry's emerging focus on combined cycle Next Generation Nuclear Plants' (NGNP) seemingly natural fit in producing electricity and process heat for hydrogen production. To utilize this process heat, engineers must uncover a thermal device that can transfer the thermal energy from the NGNP to the hydrogen plant in the most performance efficient and cost effective way possible. This book is written around that vital quest, and the author describes the usefulness of the Intermediate Heat Exchanger (IHX) as a possible solution. The option to transfer heat and thermal energy via a single-phase forced convection loop where fluid is mechanically pumped between the heat exchangers at the nuclear and hydrogen plants is presented, and challenges associated with this tactic are discussed. As a second option, heat pipes and thermosyphons, with their ability to transport very large quantities of heat over relatively long distance with small temperature losses, are also examined.

Thermal-Hydraulic Analysis of Nuclear Reactors (Hardcover, 2nd ed. 2017): Bahman Zohuri Thermal-Hydraulic Analysis of Nuclear Reactors (Hardcover, 2nd ed. 2017)
Bahman Zohuri
R7,622 Discovery Miles 76 220 Ships in 10 - 15 working days

This revised text covers the fundamentals of thermodynamics required to understand electrical power generation systems and the application of these principles to nuclear reactor power plant systems. The book begins with fundamental definitions of units and dimensions, thermodynamic variables and the Laws of Thermodynamics progressing to sections on specific applications of the Brayton and Rankine cycles for power generation and projected reactor systems design issues. It is not a traditional general thermodynamics text, per se, but a practical thermodynamics volume intended to explain the fundamentals and apply them to the challenges facing actual nuclear power plants systems, where thermal hydraulics comes to play. There have been significant new findings for intercooled systems since the previous edition published and they will be included in this volume. New technology plans for using a Nuclear Air-Brayton as a storage system for a low carbon grid are presented along with updated component sizes and performance criteria for Small Modular Reactors. Written in a lucid, straight-forward style while retaining scientific rigor, the content is accessible to upper division undergraduate students and aimed at practicing engineers in nuclear power facilities and engineering scientists and technicians in industry, academic research groups, and national laboratories. The book is also a valuable resource for students and faculty in various engineering programs concerned with nuclear reactors.

Dimensional Analysis Beyond the Pi Theorem (Hardcover, 1st ed. 2017): Bahman Zohuri Dimensional Analysis Beyond the Pi Theorem (Hardcover, 1st ed. 2017)
Bahman Zohuri
R4,095 Discovery Miles 40 950 Ships in 12 - 17 working days

Dimensional Analysis and Physical Similarity are well understood subjects, and the general concepts of dynamical similarity are explained in this book. Our exposition is essentially different from those available in the literature, although it follows the general ideas known as Pi Theorem. There are many excellent books that one can refer to; however, dimensional analysis goes beyond Pi theorem, which is also known as Buckingham's Pi Theorem. Many techniques via self-similar solutions can bound solutions to problems that seem intractable. A time-developing phenomenon is called self-similar if the spatial distributions of its properties at different points in time can be obtained from one another by a similarity transformation, and identifying one of the independent variables as time. However, this is where Dimensional Analysis goes beyond Pi Theorem into self-similarity, which has represented progress for researchers. In recent years there has been a surge of interest in self-similar solutions of the First and Second kind. Such solutions are not newly discovered; they have been identified and named by Zel'dovich, a famous Russian Mathematician in 1956. They have been used in the context of a variety of problems, such as shock waves in gas dynamics, and filtration through elasto-plastic materials. Self-Similarity has simplified computations and the representation of the properties of phenomena under investigation. It handles experimental data, reduces what would be a random cloud of empirical points to lie on a single curve or surface, and constructs procedures that are self-similar. Variables can be specifically chosen for the calculations.

Hybrid Energy Systems - Driving Reliable Renewable Sources of Energy Storage (Hardcover, 1st ed. 2018): Bahman Zohuri Hybrid Energy Systems - Driving Reliable Renewable Sources of Energy Storage (Hardcover, 1st ed. 2018)
Bahman Zohuri
R4,446 Discovery Miles 44 460 Ships in 12 - 17 working days

This book discusses innovations in the field of hybrid energy storage systems (HESS) and covers the durability, practicality, cost-effectiveness, and utility of a HESS. It demonstrates how the coupling of two or more energy storage technologies can interact with and support renewable energy power systems. Different structures of stand-alone renewable energy power systems with hybrid energy storage systems such as passive, semi-active, and active hybrid energy storage systems are examined. A detailed review of the state-of-the-art control strategies, such as classical control strategies and intelligent control strategies for renewable energy power systems with hybrid energy storage systems are highlighted. The future trends for combination and control of the two systems are also discussed.

Thermodynamics in Nuclear Power Plant Systems (Hardcover, 2nd ed. 2019): Bahman Zohuri, Patrick McDaniel Thermodynamics in Nuclear Power Plant Systems (Hardcover, 2nd ed. 2019)
Bahman Zohuri, Patrick McDaniel
R4,753 Discovery Miles 47 530 Ships in 12 - 17 working days

This revised book covers the fundamentals of thermodynamics required to understand electrical power generation systems, honing in on the application of these principles to nuclear reactor power systems. This text treats the fundamentals of thermodynamics from the perspective of nuclear power systems. In addition to the Four Laws of Thermodynamics, it discusses Brayton and Rankine power cycles in detail with an emphasis on how they are implemented in nuclear systems. Chapters have been brought up-to-date due to significant new results that have become available for intercooled systems and combined cycles and include an updated steam table. The book starts with basic principles of thermodynamics as applied to power plant systems. It then describes how Nuclear Air-Brayton systems will work. It documents how they can be designed and the expected ultimate performance. It describes several types of Nuclear Air-Brayton systems that can be employed to meet different requirements and estimates component sizes and performance criteria for Small Modular Reactors (SMR) based on the Air-Brayton concept. The book provides useful insight into the engineering of nuclear power systems for students and the tabular data will be of great use to practicing engineers.

Business Resilience System (BRS): Driven Through Boolean, Fuzzy Logics and Cloud Computation - Real and Near Real Time Analysis... Business Resilience System (BRS): Driven Through Boolean, Fuzzy Logics and Cloud Computation - Real and Near Real Time Analysis and Decision Making System (Hardcover, 1st ed. 2017)
Bahman Zohuri, Masoud Moghaddam
R4,834 R3,623 Discovery Miles 36 230 Save R1,211 (25%) Ships in 12 - 17 working days

This book provides a technical approach to a Business Resilience System with its Risk Atom and Processing Data Point based on fuzzy logic and cloud computation in real time. Its purpose and objectives define a clear set of expectations for Organizations and Enterprises so their network system and supply chain are totally resilient and protected against cyber-attacks, manmade threats, and natural disasters. These enterprises include financial, organizational, homeland security, and supply chain operations with multi-point manufacturing across the world. Market shares and marketing advantages are expected to result from the implementation of the system. The collected information and defined objectives form the basis to monitor and analyze the data through cloud computation, and will guarantee the success of their survivability's against any unexpected threats. This book will be useful for advanced undergraduate and graduate students in the field of computer engineering, engineers that work for manufacturing companies, business analysts in retail and e-Commerce, and those working in the defense industry, Information Security, and Information Technology.

Plasma Physics and Controlled Thermonuclear Reactions Driven Fusion Energy (Hardcover, 1st ed. 2017): Bahman Zohuri Plasma Physics and Controlled Thermonuclear Reactions Driven Fusion Energy (Hardcover, 1st ed. 2017)
Bahman Zohuri
R3,171 R1,813 Discovery Miles 18 130 Save R1,358 (43%) Ships in 12 - 17 working days

This book covers the basic principles of both fusion and plasma physics, examining their combined application for driving controlled thermonuclear energy. The author begins by explaining the underlying scientific theory, and then goes on to explore the nuances of deployment within thermonuclear reactors. The potential for these technologies to help shape the new generation of clean energy is examined in-depth, encompassing perspectives both highlighting benefits, and warning of challenges associated with the nuclear fusion pathway. The associated computer code and numerical analysis are included in the book. No prior knowledge of plasma physics or fusion is required.

Neutronic Analysis For Nuclear Reactor Systems (Hardcover, 2nd ed. 2019): Bahman Zohuri Neutronic Analysis For Nuclear Reactor Systems (Hardcover, 2nd ed. 2019)
Bahman Zohuri
R5,076 Discovery Miles 50 760 Ships in 12 - 17 working days

This expanded new edition develops the theory of nuclear reactors from the fundamentals of fission to the operating characteristics of modern reactors. The first half of the book emphasizes reactor criticality analysis and all of the fundamentals that go into modern calculations. Simplified one group diffusion theory models are presented and extended into sophisticated multi-group transport theory models. The second half of the book deals with the two main topics of interest related to operating reactors - reactor kinetics/dynamics, and in-core fuel management. Additional chapters have been added to expand and bring the material up-to-date and include the utilization of more computer codes. Code models and detailed data sets are provided along with example problems making this a useful text for students and researchers wishing to develop an understanding of nuclear power and its implementation in today's modern energy spectrum. Covers the fundamentals of neutronic analysis for nuclear reactor systems to help understand nuclear reactor theory; Describes the benefits, uses, safety features, and challenges related to implementation of Small Modular Reactors; Provides examples, data sets, and code to assist the reader in obtaining mastery over the subjects.

Inertial Confinement Fusion Driven Thermonuclear Energy (Hardcover, 1st ed. 2017): Bahman Zohuri Inertial Confinement Fusion Driven Thermonuclear Energy (Hardcover, 1st ed. 2017)
Bahman Zohuri
R4,390 Discovery Miles 43 900 Ships in 12 - 17 working days

This book takes a holistic approach to plasma physics and controlled fusion via Inertial Confinement Fusion (ICF) techniques, establishing a new standard for clean nuclear power generation. Inertial Confinement Fusion techniques to enable laser-driven fusion have long been confined to the black-box of government classification due to related research on thermonuclear weapons applications. This book is therefore the first of its kind to explain the physics, mathematics and methods behind the implosion of the Nd-Glass tiny balloon (pellet), using reliable and thoroughly referenced data sources. The associated computer code and numerical analysis are included in the book. No prior knowledge of Laser Driven Fusion and no more than basic background in plasma physics is required.

Heat Pipe Design and Technology - Modern Applications for Practical Thermal Management (Hardcover, 2nd ed. 2016): Bahman Zohuri Heat Pipe Design and Technology - Modern Applications for Practical Thermal Management (Hardcover, 2nd ed. 2016)
Bahman Zohuri
R5,368 Discovery Miles 53 680 Ships in 12 - 17 working days

This book provides a practical study of modern heat pipe engineering, discussing how it can be optimized for use on a wider scale. An introduction to operational and design principles, this book offers a review of heat and mass transfer theory relevant to performance, leading into and exploration of the use of heat pipes, particularly in high-heat flux applications and in situations in which there is any combination of non-uniform heat loading, limited airflow over the heat generating components, and space or weight constraints. Key implementation challenges are tackled, including load-balancing, materials characteristics, operating temperature ranges, thermal resistance, and operating orientation. With its presentation of mathematical models to calculate heat transfer limitations and temperature gradient of both high- and low-temperature heat pipes, the book compares calculated results with the available experimental data. It also includes a series of computer programs developed by the author to support presented data, aid design, and predict performance.

Thermal Effects of High Power Laser Energy on Materials (Paperback, 1st ed. 2021): Bahman Zohuri Thermal Effects of High Power Laser Energy on Materials (Paperback, 1st ed. 2021)
Bahman Zohuri
R4,507 Discovery Miles 45 070 Ships in 10 - 15 working days

This book offers a tutorial on the response of materials to lasers, with an emphasis on simple, intuitive models with analytical and mathematical solutions, using techniques such as Laplace Transformation to solve most complex heat conduction equations. It examines the relationship between existing thermal parameters of simple metals and looks at the characteristics of materials and their properties in order to investigate and perform theoretical analysis from a heat conduction perspective mathematically. Topics discussed include optical reflectivity of metals at infrared (IR) wavelengths, laser-induced heat flow in materials, the effects of melting and vaporization, the impulse generated in materials by pulsed radiation, and the influence of the absorption in the blow-off region in irradiated material. Written for engineers, scientists, and graduate-level engineering and physics students, Thermal Effects of High Power Laser Energy on Materials provides an in-depth look at high energy laser technology and its potential industrial and commercial applications in such areas as precision cutting, LIDAR and LADAR, and communications. The knowledge gained from this allows you to apply spaced-based relay mirror in order to compensate laser beam divergence back to its original coherency by preventing further thermal blooming that takes place during laser beam propagation through the atmosphere. Examines the state-of-the-art in currently available high energy laser technologies; Includes computer codes that deal with the response of materials to laser radiation; Provides detailed mathematical solutions of thermal response to laser radiation.

Radar Energy Warfare and the Challenges of Stealth Technology (Paperback, 1st ed. 2020): Bahman Zohuri Radar Energy Warfare and the Challenges of Stealth Technology (Paperback, 1st ed. 2020)
Bahman Zohuri
R4,510 Discovery Miles 45 100 Ships in 10 - 15 working days

This book provides a solid foundation for understanding radar energy warfare and stealth technology. The book covers the fundamentals of radar before moving on to more advanced topics, including electronic counter and electronic counter-counter measures, radar absorbing materials, radar cross section, and the science of stealth technology. A final section provides an introduction to Luneberg lens reflectors. The book will provide scientists, engineers, and students with valuable guidance on the fundamentals needed to understand state-of-the-art radar energy warfare and stealth technology research and applications.

Business Resilience System (BRS): Driven Through Boolean, Fuzzy Logics and Cloud Computation - Real and Near Real Time Analysis... Business Resilience System (BRS): Driven Through Boolean, Fuzzy Logics and Cloud Computation - Real and Near Real Time Analysis and Decision Making System (Paperback, Softcover reprint of the original 1st ed. 2017)
Bahman Zohuri, Masoud Moghaddam
R2,834 Discovery Miles 28 340 Ships in 10 - 15 working days

This book provides a technical approach to a Business Resilience System with its Risk Atom and Processing Data Point based on fuzzy logic and cloud computation in real time. Its purpose and objectives define a clear set of expectations for Organizations and Enterprises so their network system and supply chain are totally resilient and protected against cyber-attacks, manmade threats, and natural disasters. These enterprises include financial, organizational, homeland security, and supply chain operations with multi-point manufacturing across the world. Market shares and marketing advantages are expected to result from the implementation of the system. The collected information and defined objectives form the basis to monitor and analyze the data through cloud computation, and will guarantee the success of their survivability's against any unexpected threats. This book will be useful for advanced undergraduate and graduate students in the field of computer engineering, engineers that work for manufacturing companies, business analysts in retail and e-Commerce, and those working in the defense industry, Information Security, and Information Technology.

Thermal-Hydraulic Analysis of Nuclear Reactors (Paperback, Softcover reprint of the original 2nd ed. 2017): Bahman Zohuri Thermal-Hydraulic Analysis of Nuclear Reactors (Paperback, Softcover reprint of the original 2nd ed. 2017)
Bahman Zohuri
R7,451 Discovery Miles 74 510 Ships in 10 - 15 working days

This revised text covers the fundamentals of thermodynamics required to understand electrical power generation systems and the application of these principles to nuclear reactor power plant systems. The book begins with fundamental definitions of units and dimensions, thermodynamic variables and the Laws of Thermodynamics progressing to sections on specific applications of the Brayton and Rankine cycles for power generation and projected reactor systems design issues. It is not a traditional general thermodynamics text, per se, but a practical thermodynamics volume intended to explain the fundamentals and apply them to the challenges facing actual nuclear power plants systems, where thermal hydraulics comes to play. There have been significant new findings for intercooled systems since the previous edition published and they will be included in this volume. New technology plans for using a Nuclear Air-Brayton as a storage system for a low carbon grid are presented along with updated component sizes and performance criteria for Small Modular Reactors. Written in a lucid, straight-forward style while retaining scientific rigor, the content is accessible to upper division undergraduate students and aimed at practicing engineers in nuclear power facilities and engineering scientists and technicians in industry, academic research groups, and national laboratories. The book is also a valuable resource for students and faculty in various engineering programs concerned with nuclear reactors.

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