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This post was last edited by bjlqellws at 2018-12-24 19:03 "Process Equipment Computer-Aided Design - General Higher Education 13th Five-Year Plan Textbook", which details the design of shell-and-tube heat exchangers and tube heating furnaces based on HTRI in the form of a complete case; Design of tubular heating furnace based on FRNC-5 PC ; Process calculation of reaction equipment based on Aspen Plus ; Calculation of adsorption process based on Aspen Adsorption ; Shell and tube heat exchanger design based on Aspen EDR ; Structural design of stirring vessel, floating head heat exchanger and methanol water cooler based on SW6 software ; Based on ANSYS software, the analysis of the temperature field of the thick-walled cylinder, the analysis of the stress field of the thick-walled cylinder, the stress analysis and thermal stress analysis of the skirt support area of the tower equipment, the deformation analysis of the O-ring sealing ring, and the three-dimensional stress analysis of the opening part of the pressure vessel. While introducing the operating steps, some details during the use of the software are explained to facilitate readers to use and understand the software correctly and meet the needs of process equipment design and calculation. This book is suitable for technicians engaged in process equipment design and teachers and students in colleges and universities majoring in process equipment and control engineering, chemical engineering and technology, energy science and engineering, power engineering, thermal energy engineering, and mechanical engineering. "Computer-Aided Design of Process Equipment - General Higher Education 13th Five-Year Plan Textbook", in the form of explanations and interfaces for computer software operations, covers HTRI, FRNC-5PC, AspenPlus, AspenAdsorption, AspenEDR, SW6, ANSYS and other software, making it easy to learn * and master the principles and steps of software operation. The book "Process Equipment Computer-Aided Design" has a case in each chapter, a commonly used software for daily design calculations in each chapter, and a process equipment or its components in each chapter. ; Each step has a clear screenshot, the difficult points are explained, and the final result is also analyzed. Among them, 50% belongs to the process design calculation of process equipment, and 50% belongs to the mechanical design calculation of process equipment. 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Five-Year Plan Textbook" Catalog: Introduction 0.1 Introduction to HTRI software 0.2 Introduction to FRNC-5 PC software 0.3 Introduction to Aspen Plus software 0.4 Introduction to SW6 software 0.5 Introduction to ANSYS software Chapter 1 Shell and tube heat exchanger design based on HTRI software 1.1 Calculation types in HTRI software 1.2 Definition of process conditions in HTRI software 1.3 Definition of shell side structural parameters 1.4 Definition of baffle structural parameters 1.5 Definition of tube structure parameters 1.6 Input of physical property parameters 1.7 Intermediate design calculation results 1.8 Parameter adjustment 1.9 Software calculation function Chapter 2 Tube heating furnace design based on HTRI software 2.1 New project 2.2 Project configuration 2.3 Gas space structural form 2.4 Burner position parameters 2.5 Burner parameters 2.6 Furnace tube position 2.7 Geometric parameters of furnace tube cross section 2.8 Flow sequence of heating medium in the furnace tube 2.9 Selection of process method 2.10 Parameters used to calculate heat loss 2.11 Optional other parameters 2.12 Combustion parameters 2.13 Fuel oil parameters 2.14 Oxidant parameters 2.15 Diluent (steam) parameters 2.16 Second fuel parameters 2.17 Oxidant-air parameters 2.18 Selection of process conditions 2.19 Air gas phase parameter setting around the heating furnace 2.20 Parameters of radiation feed characteristics 2.21 Design results and summary Chapter 3 Tubular heating furnace design based on FRNC-5 PC software 3.1 Data input of the combustion chamber 3.2 Data input of the convection chamber 3.3 Data input of the chimney section 3.4 Data input of the coil section 3.5 Data input of the straight pipe section 3.6 Data input of the process medium 3.7 Data input of various combustion parameters 3.8 Fuel data input 3.9 Data input when considering heat loss 3.10 Data input when steam/water is injected 3.11 Data input for heat recovery system 3.12 Air flow data input 3.13 Air preheater data input 3.14 Physical property data input 3.15 Calculation results and uses Chapter 4 Reaction equipment process calculation based on Aspen Plus software 4.1 Introduction to the interface 4.2 Definition of the reactor module 4.3 Definition of flow chart 4.4 Calculation results and analysis Chapter 5 Calculation of adsorption process based on Aspen Adsorption software 5.1 Software interface 5.2 Adding materials required for the simulation process 5.3 Creating process flow chart 5.4 Data input 5.5 Creating real-time curve 5.6 Calculation results Chapter 6 Shell and tube heat exchanger design based on Aspen EDR software 6.1 Aspen EDR interface 6.2 Definition of design parameters 6.3 Definition of physical properties 6.4 Definition of heat exchanger geometric data 6.5 Definition of heat exchanger material data 6.6 Selection of specific design description information 6.7 Calculation process 6.8 Design results Chapter 7 Stirring vessel structural design based on SW6 software 7.1 Software verification calculation 7.2 Main body design parameters 7.3 Barrel design calculation 7.4 Head design calculation 7.5 Equipment flange design calculation 7.6 Agitator design calculation 7.7 Opening reinforcement design calculation 7.8 Jacket design calculation Chapter 8 Structural design of floating head heat exchanger based on SW6 software 8.1 Definition of main design parameters 8.2 Calculation of simplified structure 8.3 Calculation of tube plate structure 8.4 Calculation of front-end pipe box structure 8.5 Calculation of rear-end pipe box structure 8.6 Calculation of front-end pipe box flange structure 8.7 Calculation of rear-end pipe box flange and cylinder flange structure 8.8 Calculation of opening reinforcement 8.9 Calculation of floating head structure Chapter 9 Strength calculation of methanol water cooler based on SW6 software 9.1 Design of main body 9.2 Design of tube plate 9.3 Pipe box calculation 9.4 Flange calculation 9.5 Opening reinforcement calculation 9.6 Summary of calculation results Chapter 10 Temperature field analysis of thick-walled cylinder based on ANSYS software 10.1 Definition of work file name and work title 10.2 Definition of unit type and material properties 10.3 Establishment of geometric model 10.4 Generate finite element mesh 10.5 Apply constraints, loads and solve 10.6 Calculation results Chapter 11 Stress field analysis of thick-walled cylinder based on ANSYS software 11.1 Selection of analysis module 11.2 Establishing model 11.3 Selection of units 11.4 Setting of material properties 11.5 Mesh division 11.6 Application of loads and constraints 11.7 Solution process 11.8 Result Analysis Chapter 12 Stress Analysis of Tower Equipment Skirt Support Area Based on ANSYS Software 12.1 Environment Settings 12.2 Model Creation 12.3 Mesh Division 12.4 Loading and Solving 12.5 Results Post-processing Chapter 13 Thermal Stress Analysis of Tower Equipment Skirt Support Area Based on ANSYS Software 13.1 Environment Settings 13.2 Model Creation 13.3 Mesh Division 13.4 Loading and Solving 13.5 Post-processing 13.6 Re-enter pre-processing 13.7 Re-enter solver 13.8 * Final post-processing 13.9 Summary of this chapter Chapter 14 Deformation analysis of O-ring sealing ring based on ANSYS software 14.1 Environment settings 14.2 Definition of elements and materials 14.3 Creating O-ring model 14.4 Mesh O-ring 14.5 Creating upper and lower flange models 14.6 Mesh upper and lower flanges 14.7 Processing of contact between upper flange and O-ring 14.8 Treatment of the contact between the lower flange and the O-ring 14.9 Application of constraints 14.10 Setting of solution options 14.11 Loading and solution 14.12 Summary of this chapter Chapter 15 Three-dimensional stress analysis of pressure vessel openings based on ANSYS software 15.1 Establishment process of finite element model 15.2 Viewing process of analysis results 15.3 Stress linearization path in finite element analysis 15.4 Results of path stress linearization in finite element analysis 15.5 Chapter Summary References
I thought it was an electronic book...
It should be that the author is selling books. He has promoted it in various groups before. At that time, he thought it was too troublesome to transfer money to the publisher's account and send faxes, so he gave up.; It is now sold on JD.com, but unfortunately I don’t have the motivation to buy it now. If you need it, you can buy it.
This post was last edited by bjlqellws on 2017-8-1 16:40. It can be borrowed from university libraries. http://opac.calis.edu.cn/opac/showHolding.do?subact=enterpage&fromType4Holding=fromSimpleList&oid4Holding=8a1b526192f0b3a62f9a9c8186099b97&langBase4Holding=null http://book.du * u.com/book.do?go=sbmlib&d*d=000016131132&d=1F569FDE5AC17F80AF77C0792B154A54
Digital library http://book.du* u.com/book.do?go=sbmlib&d*d=000016131132&d=1F569FDE5AC17F80AF77C0792B154A54
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