Ideal for joint development! Flexible reaction rate analysis for post-processing equipment!
GT-SUITE has an integrated library of chemical reactions and after-treatment devices, allowing for the modeling of any after-treatment (AT) device individually or within an integrated system. Meanwhile, users can utilize highly flexible features to modify or specify the involved chemical reaction mechanisms. The design of this library aligns with GT's goals, enabling the simulation of all scenarios for engine and vehicle systems using a single tool. Additionally, this library can be used to model AT systems alongside vehicles, engines, thermal management, and control systems, making it particularly suitable for collaborative development. **Key Features of the Library** - Specify chemical reaction mechanisms using the intuitive and flexible input method of the GT-ISE GUI. - Support for various catalysts and filters (TWC, DOC, LNT, DPF, Catalyzed-DPF, SCR-DPF, SCR, AOC, etc.), as well as future reaction devices. *For more details, please refer to the PDF materials or feel free to contact us.*
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**The Most Important Features of the Library** - A highly efficient and stable chemical reaction solver from a numerical computation perspective, capable of handling adaptive meshes. - The mesh adapts to local chemical reactions, analyzing the stiffest nonlinear reaction-diffusion problems faster than conventional real-time solvers. - An advanced micropore diffusion model for flow-through type catalysts corresponding to dual washcoat layers. - A detailed model of a particulate removal device with fully discretized wall flow, including diffusion in the inlet flow path, soot cake layer, base wall surface, and outlet flow path. - As it is an integrated single tool, there is no need for third-party tools or compilers. - Built-in direct DOE optimization functionality for adjusting reaction rate parameters. - Users can encrypt their unique models and distribute them outside their organization. - All users can utilize the cutting-edge mechanisms of each catalyst and the library of DPF applications as starting models. *For more details, please refer to the PDF document or feel free to contact us.*
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For more details, please refer to the PDF document or feel free to contact us.
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While focusing on MBD and CAE technologies and their surrounding technical areas, we specialize in building virtual products and collaborative design processes through cutting-edge digital engineering. We form partnerships with leading-edge software vendors of the era, providing a comprehensive engineering environment necessary to solve our customers' increasingly diverse and complex challenges using top-level domestic digital engineering technologies, including thermal fluid analysis, structural analysis, electromagnetic field analysis, acoustic analysis, system simulation, optimization technologies, embedded software development environments, and simulation process data management (SPDM) solutions.