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Request to share the Inplant 4.5 installation package

2016-08-31View Original

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This post was last edited by longkui1990 on 2016-8-31 at 17:26. There is a serious bug in the Separator feature of version 4.2; no matter what I try, I can’t avoid it. I’m hoping someone can share the latest version 4.5 – a link shared via the site’s internal messaging system would be great. It’s urgent. Thank you, reward_7ree
Reply #22016-09-28
How do I upgrade? Come and take a look, learn* it!
Reply #32016-10-09
I can find 4.3, do you want it?
Reply #42016-10-09
Thank you, but version 4.3 doesn’t work; I still need version 4.5
Reply #52017-03-28
Help to hold it down, inplant. The nplant pipeline simulation analysis software, the INPLANT program, is a rigorous, steady-state simulation tool used for designing, calculating, and analyzing plant piping systems. Using the Microsoft Windows interface of the INPLANT program, plant engineers can quickly calculate and analyze the safety of the plant piping system. Engineers can also use this program to design new pipeline systems or modify various existing systems. The application scope ranges from simple, single-pipe designs and calculations to large-scale, multiphase fluid pipeline networks, including studies of complex, interconnected loops such as heat transfer in different environments. The INPLANT program can also analyze heat transfer networks involved in pressure relief system issues, with single-phase or multi-phase fluids flowing at high speeds or at critical conditions. (1) Wide range of applications: Flame pressure relief networks, container pressure reduction studies, negative pressure transmission pipelines, process piping, fire suppression networks, public utility distribution systems, logistics systems, as well as design calculations for single-connected and pressure relief system pipelines. (2) Advanced calculation functions: A database of standard, industrially proven thermodynamic and property methods based on the SIMSCI standard; the built-in database contains data on 1,450 components. A comprehensive database of pressure drop calculation methods, including those developed specifically for high-speed fluid systems. Detailed heat transfer calculations, including simulations of multiple insulation layers in various environmental media. Integrated, step-by-step methods for pressure drop and heat transfer calculations. Simulation of single-phase and multi-phase fluids; fluids can be defined based on compositional or non-compositional criteria

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