Visual-Environment - Комплексное решение для моделирования и тестирования виртуальных прототипов, предназначенное для обеспечения тонкой настройки всех этапов производственного процесса и получения конечного продукта высокого качества.
Год: 2012 Размер: 1,1 Гб Разработчик: ESI Groupe Язык интерфейса: Английский, Французский Таблетка: Присутствует (Team-SolidSQUAD (SSQ)) Версия: 8.0 Разрядность: 32bit+64bit Совместимость с Vista: полная Совместимость с Windows 7: полная Системные требования: Windows XP/Vista/7 32/64 bit Memory (RAM): 1024 MB or higher Graphics Card: Nvidia Geforce 7800 GTX (PCI-express card with 256MB on board) Screen Resolution: 1280 x 1024; True Color (32bit)
Visual-Environment - это интегрированный пакет пре- и постпроцессоров, могущих работать одновременно или поодиночке в общей среде других продуктов ESI Groupe.
О ESI Group
Компания ESI Group - пионер и мировой лидер в разработке решений для моделирования виртуальных прототипов, которые учитывают и берут во внимание физические характеристики материалов. Коллектив компании разработал широкий набор промышленно-ориентированных приложений для реалистичного моделирования и поведения прототипа во время тестирования, чтобы обеспечить более тонкую настройку всех производственных процессов для сохранения высокого качества конечного продукта. В настоящее время в компании работает более 750 специалистов мирового уровня, а представительства располагаются более чем в 30 странах мира.
ESI Visual Environment- это интегрированный пакет пре- и постпроцессоров, которые могут работать одновременно в общей среде других продуктов ESI Group или самостоятельно.
Visual-Mesh is a complete meshing tool which supports CAD Import, 2D and 3D Meshing and Editing features. Some of the features which work on ‘mesh only’ will be available in Visual-Crash PAM context.
Visual-Crash PAM (VCP), which is one of the contexts in Visual-Environment, provides PAM-CRASH users with fast iteration and rapid model revision process, from data input to visualization for crashworthiness simulation and design. This environment provides quick model browsing, advanced mesh editing capabilities and rapid graphical assembly of system models. VCP allows graphical creation, modification and deletion of contacts, materials, constraints, control cards and all crash entities. In VCP, you are provided with tools for checking model quality and simulation parameters prior to launching calculations with the Solver. Using these tools helps in correcting errors and fine-tuning the model and simulation before submitting it to a solver, thus saving time and resources.
Visual-Safe is a context in Visual-Environment, dedicated to Safety utilities. High productivity tools such as advanced dummy positioning, seat morphing, belt fitting and airbag folding are provided in this context.
Visual-Safe MAD (VSM) is a complete, efficient and productive CAE environment for multi-body and finite element occupant safety simulations using Madymo. It utilizes the multi-window/multi-model/multi-application environment of Visual-Environment very efficiently. It provides complete flexibility of working for both the experienced and the novice Madymo users alike. It incorporates a vast database of customer requirements and feedback gathered over a decade.
Visual-Medysa guides PAM-MEDYSA 2G users in building system models for design optimization and performance validation of complex mechanical systems. Mechanical systems such as engine, tires, chassis, suspensions, and machinery transmissions, can be modeled with ease in this environment.
High Velocity Impact (HVI) simulation is used to analyze the dynamic behavior of materials under very high speed impacts. Visual-HVI supports PAM -SHOCK HVI user in modeling such material data easily. This typically finds applications in aerospace where we need to understand the damage suffered by a spacecraft when it encounters space debris, such as micro-meteoroids.
Visual-Viewer is the new generation Post Processing tool with state-of-art Plotting utility. This caters to the requirements of the CAE community. Visual-Viewer is built on the multi page/multiplot environment, which enables the user to group his data into pages and plots. Visual-Viewer is designed with intuitive and sleek user interface with Windows look and feel. Complete session can be re-run without loss of any data. Visual-Viewer is completely command driven which enables the user to execute commands at ease. Visual-Viewer is completely built on multi-page and multi-plot environment. The user has the freedom to create any number of pages and to have upto 16 windows in a single page. These windows can be plot, animation, video, model or drawing block windows. The entire snapshot of the product can be saved as a template and restored any time.
Visual-Process Executive’s Process-oriented philosophy brings a compelling advantage to PAM-CRASH users to build processes quickly by customizing GUIs and to execute them.
Visual-Crash Dyna (VCD) provides advanced capability and fast-guided model building of LS-DYNA solver. Using Visual-Environment multi-window/multimodels/ multi-application environment, with visual verification, complete model building activity can be performed efficiently.
Visual-Seal provides advanced capability and fast-guided model building of Seal model. Using the Visual-Environment multi-window/multi-model/multi-application environment, with visual verification, complete model-building activity can be performed efficiently.
Visual-Life Nastran (VLN) is a comprehensive, integrated environment for Nastran simulations with powerful enterprise capabilities. VLN is a ‘high-performance’ software to manage and assemble large and complex finite element system models for Nastran, NVH and durability analysis with its unique multi-window / multi model environment providing high productivity with powerful visualization and model browsing.
Visual-Crash Rad (VCR) (Beta) provides advanced capability and fast-guided model building of RADIOSS solver. Using Visual-Environment multi-window/multimodels/ multi-application environment, with visual verification, complete model building activity can be performed efficiently.
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