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The last edit to this post was made by aiuanang2017 on 2016-11-27 at 06:59. Table of contents for “Computer-Aided Design of Process Equipment – Textbook for the 13th Five-Year Plan of General Higher Education”: http://img10.360buyimg.com/bookdetail/jfs/t2701/95/3525111568/67461/484a680e/57909888N70a383c4.jpg http://img10.360buyimg.com/bookdetail/jfs/t2779/147/3506320092/76033/d9c04758/57909889N03a34441.jpg 6.8 Design Results Chapter 7 Structural Design of Stirring Vessels Using SW6 Software 7.1 Software-Based Verification Calculations 7.2 Design Parameters of the Main Body 7.3 Calculations for the Cylinder Body Design 7.4 Calculations for the Head Design 7.5 Calculations for the Equipment Flanges 7.6 Calculations for the Stirrer Design 7.7 Calculations for Reinforcement Due to Openings 7.8 Calculations for the Jacket Design Chapter 8 Structural Design of Floating-Head Heat Exchangers Using SW6 Software 8.1 Definition of Design Parameters for the Main Body 8.2 Calculations for the Shell Structure 8.3 Calculations for the Tube Sheet Structure 8.4 Calculations for the Front Tube Box Structure 8.5 Calculations for the Rear Tube Box Structure 8.6 Calculations for the Flange Structure of the Front Tube Box 8.7 Calculations for the Flange Structure of the Rear Tube Box and the Cylinder Body Flange 8.8 Calculations for Reinforcement Due to Openings 8.9 Calculations for the Floating-Head Structure Chapter 9 Strength Calculations for Methanol Coolers Using SW6 Software 9.1 Design of the Main Body 9.2 Design of the Tube Sheet 9.3 Calculations for the Tube Box 9.4 Calculations for the Flanges 9.5 Calculations for Reinforcement Due to Openings 9.6 Summary of Calculation Results Chapter 10 Temperature Field Analysis of Thick-Walled Cylinders Using ANSYS Software 10.1 Definition of Working File Names and Titles 10.2 Definition of Element Types and Material Properties 10.3 Creation of the Geometric Model 10.4 Generation of the Finite Element Mesh 10.5 Application of Constraints, Loads, and Solving 10.6 Calculation Results Chapter 11 Stress Field Analysis of Thick-Walled Cylinders Using ANSYS Software 11.1 Selection of Analysis Modules 11.2 Model Creation 11.3 Selection of Elements 11.4 Setting of Material Properties 11.5 Mesh Generation 11.6 Application of Loads and Constraints 11.7 Solving Process 11.8 Result Analysis Chapter 12 Stress Analysis of the Base Support Area of Tower Equipment Using ANSYS Software 12.1 Environmental Settings 12.2 Model Creation 12.3 Mesh Generation 12.4 Loading and Solving 12.5 Post-Processing of Results Chapter 13 Thermal Stress Analysis of the Base Support Area of Tower Equipment Using ANSYS Software 13.1 Environmental Settings 13.2 Model Creation 13.3 Mesh Generation 13.4 Loading and Solving 13.5 Post-Processing 13.6 Returning to Preprocessing 13.7 Returning to the Solver 13.8 Final Post-Processing 13.9 Summary of This Chapter Chapter 14 Deformation Analysis of O-Rings Using ANSYS Software 14.1 Environmental Settings 14.2 Definition of Elements and Materials 14.3 Creation of the O-Ring Model 14.4 Mesh Generation for the O-Ring 14.5 Creation of Upper and Lower Flange Models 14.6 Mesh Generation for the Upper and Lower Flanges 14.7 Handling of Contact Between the Upper Flange and the O-Ring 14.8 Handling of Contact Between the Lower Flange and the O-Ring 14.9 Application of Constraints 14.10 Setting of Solving Options 14.11 Loading and Solving 14.12 Summary of This Chapter Chapter 15 Three-Dimensional Stress Analysis of Openings in Pressure Vessels Using ANSYS Software 15.1 Process of Creating the Finite Element Model 15.2 Process of Viewing Analysis Results 15.3 Path for Stress Linearization in Finite Element Analysis 15.4 Results of Stress Linearization via the Path in Finite Element Analysis 15.5 Summary of This Chapter References http://img10.360buyimg.com/imgzone/jfs/t2659/264/3518844125/142352/42826370/57909ac3Nad3f75df.jpg Each chapter of “Computer-Aided Design of Process Equipment” includes a case study, introduces a commonly used software for daily design calculations, and covers one type of process equipment or its components; Each step is accompanied by a clear screenshot, explanations are provided for the difficult parts, and the final result is also analyzed. 50% of it relates to the process design calculations for process equipment, and 50% relates to the mechanical design calculations for process equipment.
http://img30.360buyimg.com/popWaterMark/jfs/t2728/330/3539759129/27113/40ebccb6/57916526Na71183f4.jpg
Can we put the book down for a moment and study together?*
This post was last edited by aiuanang2017 on 2016-11-27 07:02: http://img10.360buyimg.com/bookdetail/jfs/t2629/62/3513172442/69781/b295a4f/57909889N295d64dc.jpg http://img10.360buyimg.com/bookdetail/jfs/t2638/96/3530908842/40521/f9606cd/5790988aNa2d66c0f.jpg http://img10.360buyimg.com/bookdetail/jfs/t3019/276/36383790/52210/421aa3e6/5790988aNa2ab16fc.jpg http://img10.360buyimg.com/bookdetail/jfs/t3022/277/37841187/48018/c60d62f3/5790988bN15480ef0.jpg
Looking forward to the upload of the electronic version of this book...
There seems to be too much of it; beginners say they can’t learn it
This post was last edited by aiuanang2017 on 2016-11-27 07:04. \"Computer-Aided Design of Process Equipment (Textbook for the 13th Five-Year Plan of General Higher Education)\") introduces the commonly used software for computer-aided design of process equipment, including HTRI, FRNC-5 PC, Aspen Plus, Aspen Adsorption, Aspen EDR, SW6, and ANSYS. It details the design of shell-and-tube heat exchangers and tubular heaters based on HTRI, using complete case studies ; Design of a tubular heating furnace based on FRNC-5 PC ; Process calculation of reaction equipment based on Aspen Plus ; Calculation of the adsorption process based on Aspen Adsorption ; Design of shell-and-tube heat exchangers based on Aspen EDR ; Structural design of stirring tanks, floating-head heat exchangers, and methanol water coolers based on SW6 software ; Analysis of the temperature field in thick-walled cylinders using ANSYS software, analysis of the stress field in thick-walled cylinders, stress analysis and thermal stress analysis of the skirt support area in tower equipment, deformation analysis of O-ring seals, and 3D stress analysis of the openings in pressure vessels. While introducing the operation steps, some detailed issues related to the use of the software are explained to help readers use and understand it correctly, thereby meeting the needs of process equipment design calculations. This book is suitable for technical personnel engaged in the design of process equipment, as well as for teachers and students in universities studying fields such as Process Equipment and Control Engineering, Chemical Engineering and Technology, Energy Science and Engineering, Power Engineering, Thermal Engineering, and Mechanical Engineering.
\"Computer-Aided Design for Process Equipment (Textbook for the 13th Five-Year Plan of General Higher Education)\” explains the operational steps while also addressing various detailed aspects related to the use of the software, thereby helping readers to use it correctly and understand it better, so as to meet the needs of design and calculation in process equipment. This book is suitable for technical personnel engaged in the design of process equipment, as well as for teachers and students in universities studying fields such as Process Equipment and Control Engineering, Chemical Engineering and Technology, Energy Science and Engineering, Power Engineering, Thermal Engineering, and Mechanical Engineering.
The book “Computer-Aided Design of Process Equipment” features one case study per chapter, one software commonly used for daily design calculations in each chapter, and one type of process equipment or its component per chapter; Each step is accompanied by a clear screenshot, explanations are provided for the difficult parts, and the final result is also analyzed.
The book “Computer-Aided Design of Process Equipment” features one case study per chapter, one type of process equipment or its components per chapter, and one common software used for daily design calculations per chapter; There is a clear screenshot for each step. Explanations are provided for the difficult parts, and the final results are also analyzed.