HEAT EXCHANGERS: Selection, Rating, and Thermal Design- II

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课程名称:换热器:选择、评估与热设计- II 课程概述:换热器:选择、评估与热设计是一门深入了解不同类型换热器及其选择、评估与热设计方法论的课程。课程涵盖了换热器设计相关的基本热传递、流体力学和热力学原理。学生将学习到各种类型的换热器,例如壳管式换热器、板式换热器和空气冷却换热器,以及它们在不同应用中的适用性。此外,课程还将介绍评估和选择换热器所使用的不同方法,包括对数平均温差法、效能-NTU法和热设计方法。 课程内容包括: 第8模块:冷凝器与蒸发器的设计关联 - 冷凝与薄膜冷凝的基本概念 - 管束内的冷凝和流体沸腾 第9模块:壳管式换热器 - 基本组成和设计过程 - 壳侧热传递与压力损失 第10模块:紧凑型换热器 - 热传递和压力损失的基础 第11模块:垫片式换热器 - 机械特性、操作特性与设计过程 第12模块:冷凝器与蒸发器 - 各种类型冷凝器的设计与热性能分析 第13模块:聚合物换热器 - 聚合物复合材料的应用及其潜在应用的热设计 该课程适合机械工程和化学工程的学生,以及航空航天和能源工程等相关领域的专业人士。通过本课程,学生能够掌握换热器在实际工况中的设计与应用能力。

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HEAT EXCHANGERS: Selection, Rating, and Thermal Design is a course that provides an in-depth understanding of the different types of heat exchangers, their selection, rating and thermal design methodologies. The course covers the fundamental principles of heat transfer, fluid mechanics, and thermodynamics as they pertain to heat exchanger design. Students will learn about the various types of heat exchangers such as shell and tube, plate and frame, and air cooled heat exchangers, and their suitability for different applications. They will also learn about the different methods used to rate and select heat exchangers, including log mean temperature difference, effectiveness-NTU method, and thermal design. Additionally, the course will cover the thermal design of heat exchangers including the use of design codes, the design of heat exchanger components, and the use of computer-aided design tools. The course is intended for Mechanical and Chemical Engineering students and professionals in related fields such as Aerospace and Energy engineering.Topics we covered in this course From Module 8 to Module 13:8. Design Correlations for Condensers and Evaporators8.1 Introduction8.2 Condensation8.3 Film Condensation on a Single Horizontal Tube8.3.1 Laminar Film Condensation8.3.2 Forced Convection8.4 Film Condensation in Tube Bundles8.5 Condensation inside Tubes8.6 Flow Boiling9. Shell-and-Tube Heat Exchangers9.1 Introduction9.2 Basic Components9.3 Basic Design Procedure of a Heat Exchanger9.4 Shell-Side Heat Transfer and Pressure Drop10. Compact Heat Exchangers10.1 Introduction10.2 Heat Transfer and Pressure Drop11. Gasketed-Plate Heat Exchangers11.1 Introduction11.2 Mechanical Features11.3 Operational Characteristics11.4 Passes and Flow Arrangements11.5 Applications11.6 Heat Transfer and Pressure Drop Calculations11.7 Thermal Performance12. Condensers and Evaporators12.1 Introduction12.2 Shell and Tube Condensers12.3 Steam Turbine Exhaust Condensers12.4 Plate Condensers12.5 Air-Cooled Condensers12.6 Direct Contact Condensers12.7 Thermal Design of Shell-and-Tube Condensers12.8 Design and Operational Considerations12.9 Condensers for Refrigeration and Air-Conditioning12.10 Evaporators for Refrigeration and Air-Conditioning12.11 Thermal Analysis12.12 Standards for Evaporators and Condensers13. Polymer Heat Exchangers13.1 Introduction13.2 Polymer Matrix Composite Materials (PMC)13.3 Nanocomposites13.4 Application of Polymers in Heat Exchangers13.5 Polymer Compact Heat Exchangers13.6 Potential Applications for Polymer Film Compact Heat Exchangers13.7 Thermal Design of Polymer Heat Exchangers

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