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Some software used by Sinopec Engineering Construction Company

2011-12-23View Original

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Some of the software and process simulation systems used by Sinopec Engineering Construction Company in various specialties (including chemical engineering, industrial furnaces, thermal engineering, and safety) include PRO-II, Aspen Plus for steady-state process simulation (material balance, unit analysis, etc.), Aspen Polymer Plus for polymer process simulation, Aspen Dynamics & Custom Modeler for dynamic process simulation and modeling, Aspen Pinch for heat exchanger network optimization, calculations for the design and verification of FRI towers (packed towers, tray towers, cross-flow towers, etc.), HTRI and HTFS for heat exchanger simulation, design, and verification calculations, Aspen Hetran/Aerotran/Teams (B-JAC) for heat exchanger design according to ASME/TEMA standards, INPLANT for pipeline hydraulics calculations, Visual Flow for the simulation and design of pressure relief systems, HEXTRAN for heat exchanger network simulation calculations, CFX for fluid dynamics simulations, Aspen Zyqad for process design database management (PFDs, equipment tables, data tables, etc.), SP and VPE for P&ID creation, Intelligent P&ID, Vantage PE for engineering database systems, GRTMPS/G4 for general process industry linear programming systems, H/CAMS for crude oil analysis management systems (including the Chevron crude oil database), Aspen PIMS for general process industry linear programming systems, REF-SIM for the operation of gasoline and BTX units, suitable for various proprietary processes such as continuous reforming, semi-regenerative reforming, and regenerative reforming, HCR-SIM/HTR-SIM for hydrocracking simulation programs and hydrofining simulation programs, AMSIM for steady-state process simulation of amine-based units used to remove H2S and CO2 from gases or liquefied petroleum gas, SULSIM for optimizing the operation of sulfurization units and identifying the thermodynamic and kinetic characteristics of process reactions, FRNC-5PC for general furnace simulation, REFORM-3PC for steam reformer simulation, FURCRAK-PC for heat transfer calculations of furnaces, crackers, and reformers, DNV for safety assessment software according to American DNV standards, Aspen FlareNet for flare network simulation software, SNAMER for steam network analysis and monitoring systems, CCSOS for simulation and optimization of catalytic cracking unit reaction-regeneration systems, CCDIS for tower design and calculation of catalytic cracking and delayed coking units, TRAYS Package for process calculation software for floating valve, tongue, tray, and bubble trays, STEAMER for process calculation of steam generators, HENMFD for multi-functional heat exchanger network design software packages, HEAT*T for heat exchanger network calculation programs, AIRL2C for calculation of dry and wet air coolers, FRHEX2C for calculation of shell-and-tube heat exchangers without phase change, FINEXCH for calculation of internal corrugated external threaded tube heat exchangers, HROD for calculation of baffle plate heat exchangers, DXF for design and calculation of guided floating valve trays, HE for calculation of plug-in heat exchangers, Aspen Properties for calculation of properties of pure components and oils, PHAWorks for HAZOP analysis. In the piping specialty (including material stress analysis and piping systems), there are PDS, PDMS, SP, 3D for 3D factory design systems, Drawiz PDS for automatic annotation of floor plans, SP Review and VPD Review for browsing and reviewing factory models, CAESAR II for static (linear and nonlinear) and dynamic stress analysis of piping systems according to standards such as ANSI B31, ANSYS for nonlinear dynamic and static finite element analysis (including fluid calculation functions), FE Pipe for finite element local stress analysis of pipes and pressure vessels, Plant wise for automatic piping, used for pipeline layout studies and estimations, PIPEsum for summarizing pipe materials, Pipemto for statistical analysis of pipe materials, Classman for managing pipe grade databases, SUPPORT/SUPMAT for statistical analysis of support structure materials, Vantage PE for engineering database systems, I-Sketch for ISO drawings, Spoolgen for generating pipe fabrication drawings. In the container and mechanical specialties, there are SW6, PV Desktop, LANSYS for design and calculation of steel pressure vessels (according to GB 150 standards), SDS for seismic design calculation of petrochemical steel equipment, Aspen Teams (B_JAC) for design and calculation of shell-and-tube heat exchangers (according to ASME and TEMA standards), Pvelite for overall and component design calculation of pressure vessels, TANK for design, analysis, and evaluation of storage tanks, ANSYS for local stress calculation of pressure vessels, FE Pipe for finite element local stress analysis of pipes and pressure vessels, CFX for fluid dynamics simulations, Storage Silo for design and verification of cylindrical silos, Vessel Support for design and verification of leg, skirt, and ear supports for vertical containers, CMCAD for computer-aided drafting of static equipment, Vantage PE for engineering database systems, SOLID EDGE for 3D CAD programs used for mechanical assembly, part modeling, and drawing, DyrRoBes for rotor dynamic analysis, CFX Tascflow for full-load analysis of turbine channels, ABAQUS for solving linear and nonlinear problems, including structural static, dynamic, thermal, and electrical responses, Agile Engineering Design System (A*AL, AXCAD) for 1D turbine design software that provides predictive performance for axial compressors and turbine machinery, supporting the design of subsonic and supersonic turbines and various working media. A turbine machinery design and analysis software that can provide the geometric shape of the blades and create models for flow field analysis. AIS – 2D and 3D mechanical CAD for structural design; PKPM – Analysis and design of reinforced concrete structures; ANSYS – Static and dynamic finite element analysis; STAAD PRO – 3D calculation of steel structures (based on American and Japanese standards); STAAD SSDD – Calculation of steel structures according to various standards; PDS (Frameworks Plus) – 3D design of steel structures; JCCAD – Design and drafting of circular foundations for independent steel towers; StruCad – CAD software for manufacturing drawings of steel structures; GLSTRUDL – Software for spatial model analysis of structural static and dynamic properties; SFCAD – CAD software for steel structure design; TSSD – Computer-aided design and drafting software for structural engineering; FCAD – Foundation calculation. Software for analysis and testing in the fields of environmental protection: EIAA – General calculations and drafting for atmospheric environment impact assessment; EIAN – Prediction of the impact of various noise sources on the sound environment using models recommended by environmental assessment guidelines; EIAW – Prediction of the impact of wastewater discharge on surface water environments using models recommended by environmental assessment guidelines. WCAD – Intelligent software package for water supply and drainage design and drafting. Software for storage and transportation, site planning, and water supply and drainage systems: CHUs – Calculations and drafting related to storage and transportation; MIS 2000 – Information system for site planning and management; INPLANT – Hydraulical calculations for pipelines; TFT – Software for earthwork calculations and drafting. WCAD – Intelligent software package for water supply and drainage design and drafting; TWT – Tianzheng CAD software for water supply and drainage design; FPE – CAD software for fire protection systems (petrochemical version). Software for cost estimation: KBase (ICARUS2000) – Project cost estimation for pricing and project control; IPE – Project cost estimation during the process design phase; ECCS – Cost control software; Software systems for cost estimation in petrochemical engineering construction in China; Software systems for cost estimation in petroleum construction and installation projects in China. Software for steel bar sampling: GGJ – Calculation of steel bar sampling. Software for project management: STAT – System for task assignment and statistical monitoring; Microsoft Project, Primavera P3, P3e/c – Progress control; Expedition, Cobra – Contract management; PMCS, eMARIAN – Material and procurement management; PMCV – Monitoring of construction costs and progress; ACCPAC, PMCF – Engineering financial management. The above are the software tools used in various fields within the chemical industry; other industries can refer to them as appropriate based on their specific needs.
Reply #22012-01-03
If all of these were genuine, how much would that cost? Ugh. . .
Reply #32012-01-07
I think even if you know how to use these software programs, it’s still not easy to get a job in those state-owned enterprises.
Reply #42012-01-13
It should be possible to use software from China’s best design and engineering companies.
Reply #52012-01-16
These software programs are great, but unfortunately they’re just for show and useless in a small place like ours
Reply #62012-01-17
It seems we’re still a small company, and our software is far from perfect
Reply #72012-01-18
There are many software options, but it is doubtful whether their specific applications can become routine
Reply #82012-01-29
There are really many software options; the key is to see if it’s easy for you to use! :o
Reply #92012-01-30
Why don’t I see Aspen Utilities?
Reply #102012-02-01
Engineering companies probably shouldn’t use Aspen Utility; it’s better to use it in factories
Reply #112012-02-01
Posts that will go viral: lol:lol:lol:lol:lol:lol

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