图书简介
The aim of the two-set series is to present a very detailed and up-to-date reference for researchers and practicing engineers in the fields of mechanical, refrigeration, chemical, nuclear and electronics engineering on the important topic of two-phase heat transfer and two-phase flow. The scope of the first set of 4 volumes presents the fundamentals of the two-phase flows and heat transfer mechanisms, and describes in detail the most important prediction methods, while the scope of the second set of 4 volumes presents numerous special topics and numerous applications, also including numerical simulation methods.
Key Features:
○ The twin-set offers an all-in-one reference for two-phase heat transfer and flows
○ The twin-set provides a comprehensive treatment of the subject with contributions from over 70 top researchers and experts
○ The twin-set is relevant to researchers and engineers working on all types of heat transfer and cooling problems in a myriad of industries
○ The twin-set covers not only conventional-sized cooling systems but also include a detailed focus on two-phase heat transfer and flow in microchannels, micro-evaporators, etc.
馆藏图书馆
Harvard Library
Volume 1: Special Topics in Boiling in Microchannels: Novel Micro/Nanoscale Configurations to Enhance Flow Boiling in Microchannels (F Yang and C Li); Evaporation, Dynamics and Interface Deformations in Thin Liquid Films Sheared by Gas in a Microchannel (O A Kabov, V V Kuznetsov and Yu O Kabova); Boiling Heat Transfer Enhancement at the Microscale (Y Peles); Micro-Evaporator Cooling Systems: Microchannel Evaporators: Flow Stabilization and Mapping for Safe Operation (S Szczukiewicz and J R Thome); Dynamic Modeling of On-Chip Two-Phase Cooling System with Multiple Micro-Evaporators in Parallel Flow (N Lamaison, J B Marcinichen and J R Thome); Electronic Micro-Evaporator Cooling Systems and Flow Control (J B Marcinichen, N Lamaison and J R Thome); Dynamic Modeling of Compact Two-Phase Electronic Cooling Systems with Microchannel Evaporators (T Saenen and M Baelmans); Volume 2: Enhanced Boiling and Plate Heat Exchangers: Heat Transfer Enhancement Techniques Applied to Evaporation Process (G Ribatski and F T Kanizawa); Pool Boiling on Plain and Enhanced Surfaces (R J Da Silva Lima and J R Thome); Two-Phase Heat Transfer and Pressure Drop within Plate Heat Exchangers (F Vakili-Farahani, R L Amalfi and J R Thome); Boiling and Two-Phase Devices: Gravity Effects on Pool Boiling Heat Transfer (P Di Marco, H Ohta and J Kim); Flow Boiling under Reduced Gravity Conditions (H Ohta, P Di Marco and J Kim); Recent Advances in Micro-Nano-Scale Surface Modifications and Their Effects on Pool Boiling Critical Heat Flux (M McCarthy); Heat Pipes and Their Applications (T Chen); Flow Pattern Based Boiling and Frictional Pressure Drop Models for Plain Horizontal Tubes (R J Da Silva Lima and J R Thome); Flow Boiling Heat Transfer in Multiport Tubes (F Vakili-Farahani and J R Thome); Volume 3: Special Topics in Condensation: Theory of Dropwise Condensation (J W Rose); Theory of Condensation in Microchannels (H S Wang and J W Rose); Prediction Methods and Numerical Modeling of Condensation Heat Transfer in Microchannels (D Del Col, S Bortolin and E Da Riva); Recent Developments in Altered Wettability for Enhancing Condensation (N Miljkovic, D J Preston and E N Wang); Film Wise Vapor Condensation on Curvalinear Surfaces (I Marchuk and O Kabov); Pragmatical Numerical Simulation of Condensation and Evaporation in Microchannels (N Antonsen and J R Thome); Flow Pattern Based Intube Condensation Model for Horizontal Tubes (R J Da Silva Lima and J R Thome); Volume 4: Numerical Modeling of Two-Phase Flow and Heat Transfer: CFD Simulation of Two-Phase Flows with Eulerian Approach. Part 1 — Review of Numerical Methods (M Magnini); CFD Simulation of Two-Phase Flows with Eulerian Approach. Part 2 — Results of Selected Computational Studies (M Magnini); Arbitrary Lagrangian-Eulerian Method for Two-Phase Flows (G Anjos, N Mangiavacchi and J Pontes); Numerical Modeling of Vapor Bubbles during Nucleate Boiling and Slug Flow (A Mukherjee and V K Dhir); Two-Phase Flow Singularities and Measurement Techniques: Two-Phase Flows in U-Bends and Flow Regime Based Pressure Drop Model (R J Da Silva Lima and J R Thome); Two-Phase Flow Characteristics in Singularities (R Revellin); Micro Particle Shadow Velocimetry (μPSV) for Quantitative Optical Measurements in Microscale Two-Phase Flows (S Khodaparast, N Borhani and J R Thome);
Readership: Graduate students, researchers and professional in the fields of mechanical, refrigeration, chemical, nuclear and electronics engineering on the important topics of two-phase heat transfer and two-phase flow.
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