Azore CFD
Azore is software for computational fluid dynamics. It analyzes fluid flow and heat transfers. CFD allows engineers and scientists to analyze a wide range of fluid mechanics problems, thermal and chemical problems numerically using a computer. Azore can simulate a wide range of fluid dynamics situations, including air, liquids, gases, and particulate-laden flow. Azore is commonly used to model the flow of liquids through a piping or evaluate water velocity profiles around submerged items. Azore can also analyze the flow of gases or air, such as simulating ambient air velocity profiles as they pass around buildings, or investigating the flow, heat transfer, and mechanical equipment inside a room. Azore CFD is able to simulate virtually any incompressible fluid flow model. This includes problems involving conjugate heat transfer, species transport, and steady-state or transient fluid flows.
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Zengo Wallet
Zengo is the only self-custodial wallet with no seed phrase vulnerability.
Why is Zengo trusted by over 1,000,000 customers?
Because no Zengo wallets have even been taken over or hacked.
Safe and secure crypto wallet:
Never worry about losing your seed phrase again.
With Zengo’s advanced cryptography, there is no seed phrase for you to manage.
Instead, the responsibility of signing blockchain transactions is divided between us and our users, so that neither party sees the other's secret information.
Welcome to the only non-custodial wallet where you don’t have to worry about losing your seed phrase.
Easily buy, sell, exchange and earn:
Purchase, sell and trade with your preferred payment method, including PayPal, bank wire, credit or debit cards, Apple Pay or Google Pay.
Supporting 6 blockchains, 4 layer 2s, and hundreds of crypto assets.
Your Wallet Is Recoverable:
Our 3FA recovery model with 3D FaceLock ensures that you can restore your wallet on any phone or tablet. Never lose access to your crypto again.
Legendary 24/7 Support:
We understand that crypto can be confusing. That’s why we make it super easy to chat with us whenever you need it. Just send us a message from within the app 24/7.
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Pix4D
Discover the only integrated drone mapping and photogrammetry software that offers tools across flight applications, desktop interfaces, and cloud platforms. Trust Pix4D’s advanced processing algorithms to deliver the high-quality survey results you require. Enhance your accuracy with the AutoGCPs feature for precise measurements. Access an immediate overview of any job site from any location via your browser, available in both 2D and 3D formats, allowing you to measure, explore, compare, share, and collaborate on the data. Maintain a thorough and current record of your project to address disputes swiftly and effectively. Utilize drones or any laser scanner to capture images or point clouds with ease. When deploying a drone, streamline and enhance your flights using the complimentary PIX4Dcapture mobile app. Harness the combined capabilities of images and point clouds to extract vital components from photogrammetry, laser scanning, or LiDAR data, surveying curbs, building footprints, walls, and catenary curves, among others. Increase your efficiency by 50% when vectorizing from point clouds and validating with images, while the Smart Grid function minimizes the need for repetitive clicks when generating spot elevations. With these tools at your disposal, you can optimize your workflow and achieve superior project outcomes.
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ContextCapture
Transform simple photographs and point clouds into intricate 3D models. The process of reality modeling involves capturing the physical attributes of an infrastructure asset, developing a detailed representation, and ensuring its upkeep through ongoing surveys. Bentley's ContextCapture is a powerful reality modeling software that offers a comprehensive digital representation of the real world by producing a 3D reality mesh. This 3D reality mesh comprises numerous triangles and image data, forming a detailed model of actual conditions. Each element within this digital framework can be automatically identified and geospatially linked, allowing for an engaging and intuitive experience when navigating, locating, viewing, and querying asset information. Reality meshes find versatile applications across various engineering, maintenance, and GIS processes, offering essential real-world context to inform decisions related to design, construction, and operations. This technology often utilizes overlapping aerial photographs captured by drones, alongside ground-level images and, when necessary, enhanced with laser scans for accuracy. As such, the integration of these methods ensures a thorough and reliable digital representation of the physical environment.
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