Fluid Mechanics and Fluid Power: Proceedings of FMFP 2019
Fluid Mechanics and Fluid Power: Proceedings of FMFP 2019
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This book covers selected proceedings from the 46th National Conference on Fluid Mechanics and Fluid Power (FMFP 2019), focusing on aerodynamics, flow control, computational fluid dynamics, and more. It is a valuable resource for researchers, academics, and students in the field of mechanics.
Format: Paperback / softback
Length: 901 pages
Publication date: 04 August 2021
Publisher: Springer Verlag, Singapore
This comprehensive volume presents a selection of proceedings from the 46th National Conference on Fluid Mechanics and Fluid Power (FMFP 2019). The contents of this book delve into diverse areas such as aerodynamics and flow control, computational fluid dynamics, fluid structure interaction, noise and aero-acoustics, unsteady and pulsating flows, vortex dynamics, nuclear thermal hydraulics, heat transfer in nanofluids, and more. Serving as a valuable resource, this book is of immense interest to researchers, academics, and students engaged in the expansive realm of mechanics.
Aerodynamics and Flow Control:
The book explores the principles and applications of aerodynamics, focusing on the study of air and other gaseous fluids in motion. It discusses key concepts such as drag, lift, and thrust, as well as the design and optimization of aircraft and other vehicles. The chapters cover topics such as airfoil design, wind tunnel testing, and computational fluid dynamics (CFD) simulations.
Computational Fluid Dynamics (CFD):
CFD is a powerful tool used to simulate the behavior of fluids in complex environments. The book discusses the principles and techniques of CFD, including finite element and finite volume methods. It covers applications in various fields, such as aerospace, automotive, energy, and medical devices. The chapters provide insights into the modeling of fluid flow, heat transfer, and turbulence, and discuss the use of CFD in solving real-world problems.
Fluid Structure Interaction:
Fluid structure interaction (FSI) is a multidisciplinary field that involves the interaction between fluids and solid structures. The book explores the principles and methodologies of FSI, including the development of numerical models and experimental techniques. It covers applications in aerospace, automotive, marine, and civil engineering, such as the design of underwater vehicles, wind turbines, and buildings. The chapters discuss the effects of fluid-structure interaction on the performance and stability of structures, and the development of efficient FSI algorithms.
Noise and Aero-Acoustics:
Noise and aero-acoustics play a crucial role in the design and operation of aircraft and other vehicles. The book discusses the principles of noise generation and propagation, as well as the development of noise control technologies. It covers topics such as sound generation in engines, propulsion systems, and airframes, as well as noise reduction techniques such as active noise control and sound insulation. The chapters provide insights into the impact of noise on human health and the environment, and the development of regulations and standards to mitigate noise pollution.
Unsteady and Pulsating Flows:
Unsteady and pulsating flows occur in a wide range of applications, including fluid machinery, blood flow, and combustion processes. The book explores the principles and methodologies of unsteady and pulsating flows, including the development of mathematical models and experimental techniques. It covers topics such as flow instability, shock waves, and turbulence, and discusses the use of unsteady and pulsating flows in the design and optimization of industrial processes. The chapters provide insights into the complex dynamics of fluid flows and their applications in various industries.
Vortex Dynamics:
Vortex dynamics is a fundamental aspect of fluid mechanics that involves the study of vortices, which are small swirling regions of fluid. The book discusses the principles and applications of vortex dynamics, including the formation and breakdown of vortices, the flow of vortices in fluids, and the interaction of vortices with solid surfaces. It covers topics such as vortex shedding, drag reduction, and the use of vortices in energy conversion and fluid transportation. The chapters provide insights into the behavior of vortices in a wide range of applications, from aerospace to hydrodynamics.
Nuclear Thermal Hydraulics:
Nuclear thermal hydraulics (NTH) is a branch of fluid mechanics that involves the design and analysis of nuclear power plants and their associated systems. The book discusses the principles and methodologies of NTH, including the modeling of nuclear reactors, heat transfer, and fluid flow. It covers topics such as reactor design, safety analysis, and thermal hydraulics, and discusses the use of NTH in the development of safe and efficient nuclear power plants. The chapters provide insights into the complex engineering challenges associated with nuclear power generation and the use of fluid mechanics in addressing them.
Heat Transfer in Nanofluids:
Nanofluids are a class of fluids composed of nanoparticles suspended in a base fluid. They have unique properties such as high thermal conductivity, low viscosity, and enhanced heat transfer capabilities. The book discusses the principles and applications of heat transfer in nanofluids, including the development of nanofluid models, the simulation of heat transfer in nanofluids, and the use of nanofluids in various industries such as energy, medicine, and aerospace. The chapters provide insights into the potential benefits of using nanofluids in improving the efficiency and performance of heat-related systems.
Conclusion:
This book serves as a valuable resource for researchers, academics, and students interested in the broad field of mechanics. It provides a comprehensive coverage of various topics related to fluid mechanics and fluid power, and serves as a platform for exchanging ideas and advancing knowledge in this field. The contributions of the authors and presenters at FMFP 2019 are recognized, and their work contributes to the ongoing development of mechanics as a discipline.
Weight: 1383g
Dimension: 235 x 155 (mm)
ISBN-13: 9789811606977
Edition number: 1st ed. 2021
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