Applications of Virtual Engineering in Combustion Equipment Development and Engineering

Author:

Jian Christopher Q.1,Lorra Michael A.1,McCorkle Douglas2,Bryden K. Mark2

Affiliation:

1. John Zink Company LLC

2. Iowa State University

Abstract

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 real-time 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.

Publisher

ASMEDC

Reference19 articles.

1. Bryden, K. M. and K. Ringel, The Virtual Workspace, DE, December, 2004.

2. Thilmany, J., Flowing into the Future, Mechanical Engineering magazine, February, 2004.

3. Bryden, K. M. and D. S. McCorkle (2004). “VE-Suite: A foundation for building virtual engineering models of high performance, low emission power plants,” 29th International Technical Conference on Coal Utilization & Fuel Systems, Clearwater, FL.

4. Bryden, K. M. and D. McCorkle, Virtual Engineering: in powerful new workspace, the next-generation power plant is only the beginning, Mechanical Engineering magazine, 2005.

5. VE-Suite, www.vesuite.org

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