Cantitate/Preț
Produs

Advances in Thermo-Fluid Engineering: Lecture Notes in Mechanical Engineering

Editat de Achintya Mukhopadhyay, Koushik Ghosh
en Limba Engleză Hardback – 14 ian 2025

Publicul țintă principal al acestui volum este format din cercetători, studenți la nivel de master sau doctorat și practicieni din ingineria aerospațială, chimică și energetică, care vor găsi aici soluții avansate pentru managementul termic în sisteme complexe. Subliniem faptul că acest volum, publicat în prestigioasa serie Lecture Notes in Mechanical Engineering, nu se limitează la abordări teoretice clasice, ci integrează tehnologii computaționale de ultimă oră.

Apreciem în mod deosebit structura riguroasă a cărții, care pornește de la fenomene fundamentale de transport magneto-hidrodinamic și avansează către soluții de control automat și inteligență artificială aplicată. Din cuprins remarcăm utilizarea algoritmilor de tip Random Forest și XGBoost pentru estimarea adâncimii eroziunii apelor, precum și utilizarea rețelelor neuronale de tip Bidirectional Long Short-Term Memory pentru coeficienții de transfer termic. Această infuzie de metode de învățare automată în mecanica fluidelor reprezintă un punct de cotitură pentru literatura tehnică actuală.

Advances in Thermo-Fluid Engineering servește ca o alternativă actualizată la Advances in Fluid and Thermal Engineering de Pankaj Saha pentru cursurile de termodinamică și dinamica fluidelor, cu avantajul major de a prezenta rezultatele de la conferința INCOM 2024 și de a pune un accent sporit pe controlul digital și sistemele de stocare a energiei. În contextul operei editorului Achintya Mukhopadhyay, volumul continuă direcțiile de cercetare explorate în lucrări precum Droplets and Sprays sau Dynamics and Control of Energy Systems, extinzând însă aria de aplicabilitate de la procesele de combustie la managementul termic în electronică și procesarea materialelor.

Citește tot Restrânge

Din seria Lecture Notes in Mechanical Engineering

Preț: 135971 lei

Preț vechi: 165817 lei
-18%

Puncte Express: 2040

Carte disponibilă

Livrare economică 19 iunie-03 iulie

Livrare prin curier în România Termenul estimat este afișat lângă disponibilitate.
Transport gratuit pentru acest produs Plată online sau ramburs, în funcție de opțiunile comenzii.
Retur gratuit în 14 zile Comandă securizată și suport în română.

Specificații

ISBN-13: 9789819772957
ISBN-10: 9819772958
Pagini: 656
Ilustrații: XX, 480 p.
Dimensiuni: 160 x 241 x 39 mm
Greutate: 1.26 kg
Ediția:2025
Editura: Springer
Colecția Lecture Notes in Mechanical Engineering
Seria Lecture Notes in Mechanical Engineering

Locul publicării:Singapore, Singapore

De ce să citești această carte

Recomandăm acest volum specialiștilor care doresc să integreze tehnici de inteligență artificială în modelarea sistemelor termice. Cititorul câștigă acces la studii de caz recente (2024) despre interacțiunea fluid-structură și controlul sistemelor electrohidraulice, oferind un avantaj competitiv în proiectarea sistemelor de răcire electronică și a echipamentelor energetice de nouă generație.


Despre autor

Achintya Mukhopadhyay este un profesor și cercetător recunoscut, cu o expertiză consolidată în ingineria mecanică și termodinamică. Contribuțiile sale anterioare, precum Fundamentals of Combustion Engineering și Droplet and Spray Transport, demonstrează un interes constant pentru mecanismele fundamentale de transport și aplicațiile acestora în propulsie și sisteme energetice. În calitate de editor, el aduce în acest volum de la editura Springer o perspectivă integrată asupra dinamicii sistemelor complexe, facilitând dialogul între cercetarea fundamentală și aplicațiile industriale moderne.


Descriere scurtă

This book presents selected extended papers from the International Conference on Mechanical Engineering (INCOM 2024), describing recent advances in thermo-fluids engineering research. Various topics covered in this book are design and analysis of thermal systems, dynamics and control of thermal systems and processes, fluid mechanics, fluid–structure interaction, heat transfer, internal combustion engines and gas turbines, multiphase flow, and heat transfer. The book is a valuable reference for researchers and professionals working in the fields of mechanical, aerospace, chemical, and power engineering and also for a number of interdisciplinary areas like materials processing, electronic, and energy storage systems where thermal management is a key design issue.

Cuprins

Impact of Conducting Block and System Inclination on Magneto-hydrodynamic Heat Transport.- MHD Convection in an Adiabatic Cylinder embedded Circular Grooved Channel with Bottom Heating.- Influence of Reynolds number on extraction of magnetic microspheres in  stratified magnetic liquid-liquid microextraction system.- Impact of Impinging Jet on MHD Mixed Convection in a Bottom-Heated Semi-circular Channel.- Magnetohydrodynamic Convective Heat Transport in Pentagonal Thermal Annuli.- Estimation of clear water flow induced maximum scour depth using random forest and XGBoost.- PID Controlled Linear Motion of Low Cost Electric Actuator for Angular Motion Generation of a Vertical Arm.- Position Control of Electrohydraulic Positioning System using PID and Fuzzy-PID Controller.- Predicting Heat Transfer Coefficient Using Bidirectional Long Short-Term Memory.- Artificial Neural Network Code for Friction Factor Prediction in Smooth Pipe Bends.- Modelling and Control of Yaw Motion Dynamics of an Autonomous Underwater Vehicle.- Analyzing Velocity Profiles around Three Eccentric Inline Submerged Vanes like Sediment Control Structure.- Performance of Plate Heat Exchanger with Tapered Channels.- Mathematical and computational modeling of monoclinal wave induced by sluice gate closure in non-prismatic trapezoidal channel.- Investigation of Combustion Behaviour in Co-flow and Cross-flow Hydrogen-Air Microcombustors: A Comparative Study.- An approach to improve water quality by increasing aeration efficiency through hydraulic jumps.- Performance Assessment of a Variable Displacement Axial Piston Pump with HMPC: An Experimental Approach.- Transition between Compensation Modes in a Variable Displacement Pump with a Double-Spool Valve.- CONCEPTUAL DESIGN OF A LOW COST UNDERWATER GLIDER FOR EDUCATIONAL PURPOSE.- On the applicability of different energy transport models in analysing mixed convection in a vented enclosure containing a heat-generating porous body.- Impact of Magnetic Field on Buoyancy-Driven Heat Transfer and Fluid Flow in an Enclosure Filled with Porous Media.- Enhancing Mixed Convection in Semicircular Channel with Twin Flexible Baffles.- Natural Convection in Bottom-heated Semicircular Channel in Presence of Elastic Thin Baffles.- Influence of Central Restriction Height on Average Static  Pressure in Dump Diffusers.- Examining Flow Patterns Around a Two-Dimensional Triangular Obstacle at Varying Reynolds Numbers.- A Computational Simulation  of Fluid Flow Around a Square Two Dimensional Object.- Performance Analysis of Sudden Expansion and Dump  Diffuser Geometries across three Reynolds number  Regime.- Analysis of hydrothermal performance in backward facing step for fluids with distinct Prandtl number.- Pressure Drop and Velocity Dynamics of Turbulent Flow Across a U-Bend Pipe: A Numerical Analysis.- FLOW SEPARATION ANALYSIS OF SINGLE-PHASE TURBULENT FLOW THROUGH BEND PIPE: A COMPUTATIONAL APPROACH.- Implication of Prandtl number on the hydro-thermal characteristics in a triangular corrugated duct.- Free convective heat transfer of nanofluid flow in an elliptic annulus.- ELECTROOSMOTIC FLOW IN A NANOCHANNEL WITH WEAK EDL OVERLAPPING AND THE INFLUENCE OF MAGNETIC FIELD WITH HALL CURRENT EFFECT.- Rheological Characteristics of Al2O3-TiO2 Composite Inks for Direct Ink Writing.- Heat Transfer Characteristics of Hybrid Nanofluids in Rectangular Ducts with Constant Heat Flux: A Numerical Study.- Convective Heat Transfer in a Series of Polygonal Thermal Systems using Common and Nano Fluids.- Effect of Micromixer Size on Performance of Electroosmotic Micromixers.- CFD investigation in a multi-segmented heated porous square cavity filled with hybrid nanofluid induced by multi-segmented magnetizing field.- Modeling and Simulation of Solidification Time in Casting.- Numerical analysis of melt flow behavior during pulse laser micro-drilling of SS-304 alloy.- Impact of Wavy Wall Cooling on Enhancement of Thermal Performance.- Investigation of Impinging Water Jet using Volume of Fluid Multiphase Method.- Improvement in the Convective Heat Transfer in Laminar Pipe Flow by Inserting Twisted Tape.

Notă biografică

Dr. Achintya Mukhopadhyay is Professor of Mechanical Engineering at Jadavpur University, Kolkata (Calcutta), India. He also served as Professor of Mechanical Engineering at Indian Institute of Technology Madras. He also held visiting positions at Technical University of Munich where he was Alexander von Humboldt Fellow and University of Illinois at Chicago. His teaching and research interests include thermodynamics, heat transfer, combustion, multiphase flows, and thermal management of energy systems. He has over 350 research publications including 140 international journal publications. He is Associate Editor of Sadhana, the Engineering journal of the Indian Academy of Sciences and published by Springer. He is Fellow of the National Academy of Sciences, India, the West Bengal Academy of Science and Technology and International Society for Energy, Environment and Sustainability, Recipient of INSA Teachers Award from Indian National Science Academy, and Life Member of Indian Society of Heat and Mass Transfer and Indian section of the Combustion Institute.
Dr. Koushik Ghosh is Professor in the Department of Mechanical Engineering at Jadavpur University, Kolkata, India. He received his Master’s degree from Jadavpur University, and worked in Bhabha Atomic Research Centre (BARC), Mumbai, India. He did Ph.D. at Jadavpur University. He worked as Post-doctoral Researcher in Institut de Radioprotection et de Sûreté Nucléaire (IRSN), France. His teaching and research interests include thermodynamics, heat transfer, boiling and condensation, multiphase flow, transport in porous media, and nuclear thermal hydraulics. He has published more than 50 research papers in various international journals in the area of heat and mass transfer and thermal engineering. He has also published several book chapters and more than 70 conference papers. He is Life Member of Indian Society of Heat and Mass Transfer.