图书简介
Set IV is a new addition to the previous Sets I, II and III. It contains 23 invited chapters from international specialists on the topics of numerical modeling of pulsating heat pipes and of slug flows with evaporation; Lattice-Boltzmann modeling of pool boiling; fundamentals of boiling in microchannels and microfin tubes, CO2 and nanofluids; testing and modeling of micro-two-phase cooling systems for electronics; and various special topics (flow separation in microfluidics, two-phase sensors, wetting of anisotropic surfaces, ultra-compact heat exchangers, etc.). The invited authors are leading university researchers and well-known engineers from leading corporate research laboratories (ABB, IBM, Nokia Bell Labs). Numerous "must read" chapters are also included here for the two-phase community. Set IV constitutes a "must have" engineering and research reference together with previous Sets I, II and III for thermal engineering researchers and practitioners.
Volume 1: Modeling of Two-Phase Flows and Heat Transfer: Pulsating Heat Pipes: Experimental Analysis, Design and Applications (Marco, Marengo, Vadim Nilolayev); Pulsating Heat Pipes: Basics of Functioning and Numerical Modeling (Vadim Nilolayev, Marco Marengo); 1-D Mechanistic Model and Simulation Code for Closed Loop Pulsating Heat Pipes (Philippe Aubin, Brian P d’Entremont, David Sturzenegger, Remy Haynau, Joseph R H Schaadt, John R Thome); Lattice Boltzmann Simulations of Saturated Boiling from Smooth and Rough Horizontal Surfaces (Ping Cheng, Shuai Gong, Chaoyang Zhang); Stability Analysis and Direct Numerical Simulation for Two-Phase Flows and Heat Transfer: A Complementary Approach (Lennon Ó Náraigh, Prashant Valluri); Numerical Modeling of Vapor Bubbles during Flow Boiling inside Microchannels (Abhijit Mukherjee); Volume 2: Boiling of CO₂ and Nanofluids: Flow Boiling of Carbon Dioxide at Low to Medium Reduced Pressures — Part 1. Carbon Dioxide Thermodynamic and Thermophysical Properties (Rita Mastrullo, A William Mauro, John R Thome, Giuseppi Vanoli, Luca Viscito); Flow Boiling of Carbon Dioxide at Low to Medium Reduced Pressures — Part 2. Flow Pattern Maps and Pressure Drop: Experiments and Prediction Methods (Rita Mastrullo, A William Mauro, John R Thome, Giuseppi Vanoli, Luca Viscito); Flow Boiling of Carbon Dioxide at Low to Medium Reduced Pressures — Part 3. Heat Transfer: Experiments and Prediction Methods (Rita Mastrullo, A William Mauro, John R Thome, Giuseppi Vanoli, Luca Viscito); Flow Boiling of Carbon Dioxide at Low to Medium Reduced Pressures — Part 4. Effect of Lubricants on Heat Transfer and Pressure Drop (Rita Mastrullo, A William Mauro, John R Thome, Giuseppi Vanoli, Luca Viscito); Boiling Heat Transfer and Critical Heat Flux Phenomena with Nanofluids (Lixin Cheng Guodong Xia, John R Thome); Volume 3: Micro-Two-Phase Cooling Systems: Cooling of Telecommunications Electronics at Nokia Bell Labs (Luca Amalfi, Todd Salamon, Nicolas Lamaison, Jackson B Marcinichen, John R Thome); Radial Hierachical Microfluidic Two-Phase Cooling for 3-D Integrated Devices (Timothy Chainer, Mark Schultz, Prish Parida, Arvind Sridhar, Chin Lee Ong, Ozgur Ozsun, Thomas Brunschwiler); Flow Boiling and Two-Phase Flows in Single-Microchannels and Microchannel Heat Sinks: Fundamentals, Differences and New Areas of Research (Cristiano Bigonha Tibiriçá, Gerhardt Ribatski); Flow Boiling in Mini to Micro Diameter Channels (Mohamed M Mahmoud, Tassos G Karayiannis); Mini-Thermosyphon using Microchannel and Micro-Pin Fin Evaporators with Flow and Visualization (Houxue Huang, John R Thome); Experimental Evaluation of a Passive Thermosyphon Cooling System for Power Electronics (Filippo Cataldo, John R Thome); Volume 4: Special Two-Phase Flow and Boiling Topics: Single- and Two-Phase Heat Transfer in an Ultra-Compact Heat Exchanger (Luca Amalfi, Nicolas Lamaison, Jackson B Marcinichen, John R Thome); Phase Separation Microfluidics (James W Palko, Hyoungsoon Lee, Chirag R Kharangate, Ki Wook Jung, Mehdi Asheghi, and Kenneth E Goodson); Experimental Study and Modeling of Flow Boiling in Tube in Normal and Microgravity Conditions (Catherine Colin, Marine Narcy); Wire-Mesh Sensors (Horst-Michael Prasser); Wetting on Anisotropic Surfaces (Xiaofei Wang, Md Ashiqur Rahman, Anthony M Jacobi); Two-Phase Flow in Micro/Mini-Channels and Microfin Tubes (Wei Li, Zhi-Chuan Sun, Jing-Zhi Zhang)
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