
UTunnel Secure Access delivers Cloud VPN, ZTNA, and Mesh Networking solutions to ensure secure remote access and smooth network connectivity.
ACCESS GATEWAY: Our Cloud VPN as a Service enables quick deployment of Cloud or On-Premise VPN servers. Utilizing OpenVPN and IPSec protocols, it facilitates secure remote connections with policy-based access control, allowing you to easily establish a VPN network for your business.
ONE-CLICK ACCESS: The Zero Trust Application Access (ZTAA) solution transforms secure access to internal business applications such as HTTP, HTTPS, SSH, and RDP. Users can access these applications through web browsers without needing client software.
MESHCONNECT: This Zero Trust Network Access (ZTNA) and mesh networking solution provides granular access controls to specific business network resources and supports the creation of secure interconnected business networks.
SITE-TO-SITE VPN: The Access Gateway solution also allows for the setup of secure IPSec Site-to-Site tunnels. These tunnels can connect UTunnel's VPN servers with other network gateways, firewalls, routers, and unified threat management (UTM) systems.
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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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CloudCompare
CloudCompare is a free and open-source software designed for processing 3D point clouds and triangular meshes. Initially created to facilitate the comparison of dense 3D point clouds, it has now transformed into a versatile solution for a wide range of 3D data processing activities. The application provides a variety of functionalities, including projection techniques, registration methods such as Iterative Closest Point (ICP), and calculations of distances between both clouds and meshes, along with statistical analysis, segmentation, and the estimation of geometric features. Users are able to manage multiple scalar fields associated with each point cloud, implement algorithms for smoothing and gradient evaluation, and visualize their data using dynamic color rendering options. The interactive tools included in the software make it easy to segment, rotate, translate, and measure 3D objects. CloudCompare is capable of supporting a wide array of input and output formats and is available for Windows, macOS, and Linux operating systems. Additionally, the software incorporates a plugin system that allows users to enhance its functionality further, making it a highly adaptable tool for 3D data analysis and visualization. With its growing community, users can benefit from continuous updates and a wealth of shared resources.
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Sony 3D Creator
The 3D Creator app enables users to scan objects in three dimensions. In its most recent update, it features five distinct scanning options: selfie scan, face scan, head scan, food scan, and freeform scan. This app comes preinstalled on various Xperia models, including Xperia 1, Xperia XZ1, Xperia XZ1 Compact, Xperia XZ2, Xperia XZ2 Compact, Xperia XZ2 Premium, and Xperia XZ3. Additionally, users of the Xperia XZ Premium can access the 3D Creator through the Android 8.0 (Oreo) update. The initial step in the scanning process involves calibration, where the camera captures images as you slowly move around the item, while an algorithm identifies prominent features. Using the camera's position and the collected images, a rough point cloud is generated, which lacks color. Following this, a mesh is constructed from the point cloud data, which consists of numerous 3D points known as vertices. With the information from the point cloud, the algorithm refines the mesh to accurately replicate the shape of the object being scanned, resulting in a detailed 3D model. This innovative process opens up new possibilities for digital representation of real-world objects.
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