We simplify your manufacturing.™ With AI in mind, Global Shop Solutions ERP software offers all the applications you need to run a leaner, more efficient manufacturing operation. From CRM, inventory management and agile project management, to job costing, scheduling, tracking and efficient quality management, every application you need is right at your fingertips.
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Introducing intelligent, effective, and discreet People Counters and Analytics for the physical world.
Our innovative solution simplifies the process of deploying, capturing, analyzing, and reporting the foot traffic within any given location. Additionally, we offer the option to monitor and report occupancy levels in real-time.
We support a variety of sectors, including Retail, Education, Gaming, Religious Institutions, Corporate Offices, and more, helping them to understand and respond to their visitor trends.
For retailers, we provide a tailored package designed to evaluate traffic performance, encompassing metrics such as conversion rates and service quality. Our seamless integrations facilitate the combination of point-of-sale data with staffing information. Moreover, the Retail Equation simulator allows users to experiment with different scenarios to boost sales and serves as a valuable educational resource to comprehend the interplay between traffic, staffing, conversion rates, and service excellence. By leveraging these insights, businesses can make informed decisions to optimize their operations.
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OpenFAST
OpenFAST is an open-source wind turbine simulation tool developed by the National Renewable Energy Laboratory (NREL) that builds on the foundations of the previous FAST v8 framework. It integrates key aspects of aerodynamics, hydrodynamics, control systems, and structural dynamics to enable comprehensive, coupled nonlinear simulations of wind turbines in various operational scenarios. This software supports a range of configurations, including onshore, fixed-bottom offshore, and floating offshore turbines, which broadens its applicability. Aimed at fostering a vibrant open-source development community, OpenFAST is designed for collaboration among researchers, industry professionals, and academics, and it features a robust software engineering framework with organized source code and automated testing capabilities. Transitioning from FAST v8.16, OpenFAST introduces a centralized GitHub repository that organizes modules, glue codes, and compiling tools, alongside a new versioning system and enhanced unit testing at the subroutine level. These advancements not only optimize the tool's performance but also create greater opportunities for collaborative engagement among users and developers dedicated to advancing wind energy technologies. Additionally, OpenFAST's commitment to open-source principles encourages innovation and knowledge sharing within the renewable energy sector, further contributing to the growth of sustainable energy solutions.
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Energy2D
Energy2D is an interactive multiphysics simulation tool rooted in computational physics, tailored to model the three main modes of heat transfer: conduction, convection, and radiation, while also incorporating particle dynamics. This software is designed to run smoothly on a variety of computer systems, streamlining the workflow by eliminating the need to switch between different preprocessors, solvers, and postprocessors typically required in computational fluid dynamics studies. Users can conduct "computational experiments" to investigate scientific theories or tackle engineering problems without the necessity for complex mathematical models. Furthermore, ongoing development aims to introduce additional energy transformation types and improve the software's compatibility with various fluid types. Although Energy2D is particularly strong in simulating conduction, its modeling of convection and radiation lacks complete accuracy, indicating that findings related to these processes should be interpreted as qualitative rather than quantitative. More than 40 scientific papers have cited Energy2D as a significant research tool, highlighting its integration into the academic landscape. As the program continues to advance, users can anticipate further enhancements in its features, which could lead to deeper understandings of intricate physical interactions, making it an even more indispensable resource for researchers and engineers alike.
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