NeuralWing
NeuralWing is a real-time neural simulation and design optimization model for transonic aircraft aerodynamics. It is built around the largest 3D transonic wing dataset, created from 30,000 steady-state CFD simulations of a 3D wing in the transonic regime, with variations across four geometry parameters and two inflow conditions. Using Emmi’s AB-UPT surrogate model trained on this data, NeuralWing enables users to modify wing geometry, test optimizations, and maximize aerodynamic efficiency in seconds. The model supports transonic 3D wing simulation, geometry and inflow variations, real-time inference, and design-parameter optimization. Its inputs include a geometry mesh in STL format, speed, and angle of attack, while its outputs include pressure, friction, velocity fields, and integral forces such as lift and drag. Geometry meshes are created in real time from four design parameters in a differentiable manner, allowing fast exploration of design changes.
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Wing Python IDE
Wing Python IDE was designed from the ground up for Python, to bring you a more productive development experience. Type less and let Wing worry about the details. Get immediate feedback by writing your Python code interactively in the live runtime. Easily navigate code and documentation. Avoid common errors and find problems early with assistance from Wing's deep Python code analysis. Keep code clean with smart refactoring and code quality inspection. Debug any Python code. Inspect debug data and try out bug fixes interactively without restarting your app. Work locally or on a remote host, VM, or container. Wingware's 21 years of Python IDE experience bring you a more Pythonic development environment. Wing was designed from the ground up for Python, written in Python, and is extensible with Python. So you can be more productive.
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Wings 3D
Wings 3D is an advanced subdivision modeler that is both powerful and easy to use. Originally inspired by Nendo and Mirai from Izware, Wings 3D has been developed since 2001, when Björn Gustavsson (bjorng) and Dan Gudmundsson (dgud) first started the project. Richard Jones (optigon) maintained Wings and coded many new features between 2006 and 2012. Wings 3D is currently maintained by Dan with the help of the great community. Wings 3D offers a wide range of modeling tools, a customizable interface, support for lights and materials, and a built-in AutoUV mapping facility. Wings 3D is written in Erlang, an open-source, functional programming language distributed by Ericsson. Wings 3D gets its name from the Winged Edge Data Structure (WEDS). This is the data structure used to store the adjacency relationships between edges, faces, and vertices in a Wings 3D model. Wings 3D is open source and completely free for use in both personal and commercial projects.
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Wing Security
Wing empowers organizations to harness the full potential of SaaS while ensuring a robust security posture. In addition to a free version that provides a list of an organization's SaaS inventory, with insightful details regarding application usage and user information, Wing’s complete SSPM solution offers unparalleled visibility, control, and compliance capabilities, strengthening any organization's defense against modern SaaS-related threats. With Wing’s automated security capabilities, CISOs, security teams, and IT professionals save weeks of work previously spent on manual and error-prone processes.
Trusted by hundreds of global companies, Wing provides actionable security insights derived from our industry-leading SaaS application database, covering over 280,000 SaaS vendors. This results in the safest and most efficient way to leverage SaaS.
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