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APPLICATIONS OF VIRTUAL ENGINEERING IN COMBUSTION EQUIPMENT DEVELOPMENT AND ENGINEERING

机译:虚拟工程在燃烧设备开发与工程中的应用

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摘要

The implementation of a virtual engineering system at John Zink Company, LLC is starting to change the engineering and development processes for industrial combustion equipment. This system is based on the virtual engineering software called VE-Suite being developed at the Virtual Reality Applications Center (VRAC) of Iowa State University. The goal of the John Zink virtual engineering system is to provide a virtual platform where product design, system engineering, computer simulation, and pilot plant test converge in a virtual space to allow engineers to make sound engineering decisions. Using the virtual engineering system, design engineers are able to inspect the layout of individual components and the system integration through an immersive stereo 3D visualization interface. This visualization tool allows the engineer not only to review the integration of subsystems, but also to review the entire plant layout and to identify areas where the design can be improved. One added benefit is to significantly speed up the design review process and improve the turn around time and efficiency of the review process. Computational Fluid Dynamics (CFD) is used extensively at John Zink to evaluate, improve, and optimize various combustion equipment designs and new product development. Historically, design and product development engineers relied on CFD experts to interpret simulation results. With the implementation of the virtual engineering system, engineers at John Zink are able to assess the performance of their designs using the CFD simulation results from a first person perspective. The virtual engineering environment provided in VE-Suite greatly enhances the value of CFD simulation and allows engineers to gain much needed process insights in order to make sound engineering decisions in the product design, engineering, and development processes. Engineers at John Zink are now focusing on taking the virtual engineering system to the next level: to allow for realtime changes in product design coupled with high-speed computer simulation along with test data to optimize product designs and engineering. It is envisioned that, when fully implemented, the virtual engineering system will be integrated into the overall engineering process at John Zink to deliver products of the highest quality to its customers and significantly shorten the development cycle time for a new generation of highly efficient and environmentally friendly combustion products.
机译:John Zink Company,LLC的虚拟工程系统的实施开始改变工业燃烧设备的工程和开发流程。该系统基于爱荷华州立大学虚拟现实应用中心(VRAC)开发的称为VE-Suite的虚拟工程软件。 John Zink虚拟工程系统的目标是提供一个虚拟平台,产品设计,系统工程,计算机仿真和中试工厂测试将汇聚在虚拟空间中,以使工程师能够做出合理的工程决策。使用虚拟工程系统,设计工程师能够通过沉浸式立体3D可视化界面来检查各个组件的布局和系统集成。该可视化工具使工程师不仅可以检查子系统的集成,还可以检查整个工厂的布局并确定可以改进设计的区域。另一个好处是可以显着加快设计审查过程,并缩短审查过程的时间和效率。 John Zink广泛使用计算流体动力学(CFD)来评估,改进和优化各种燃烧设备设计和新产品开发。过去,设计和产品开发工程师依靠CFD专家来解释仿真结果。通过实施虚拟工程系统,John Zink的工程师们可以从第一人称视角使用CFD仿真结果评估其设计的性能。 VE-Suite中提供的虚拟工程环境极大地提高了CFD仿真的价值,并允许工程师获得急需的过程见解,以便在产品设计,工程和开发过程中做出合理的工程决策。 John Zink的工程师现在专注于将虚拟工程系统提升到一个新的水平:允许产品设计的实时更改以及高速计算机仿真以及测试数据,以优化产品设计和工程。可以预见,在完全实施后,虚拟工程系统将集成到John Zink的整个工程流程中,以向其客户提供最高质量的产品,并显着缩短开发新一代高效,环保的产品的时间。友好的燃烧产物。

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