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BURNER COMPONENT UPGRADES FOR WALL-FIRED COAL BURNERS - RPI RESULTS AND EXPERIENCES

机译:壁式煤炭燃烧器的燃烧器元件升级 - RPI结果和经验

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Improving the operation and emissions performance of coal fired utility boilers equipped with first and second-generation wall fired low NO_x coal burners is of significant interest to many utility companies today. The recent development of cost effective components for existing first and second-generation wall fired burners permits better combustion performance, increased wear life reliability, and decreased NO_x emissions. Existing air register systems can typically remain in place, resulting in reduced capital cost and reduced outage time for installation. Computational fluid dynamic (CFD) modeling is used to assist in the design of key burner components and operating conditions that enable further reduction of NO_x emissions. Results include better flame attachment, better airflow recirculation patterns, and early ignition and pyrolysis of the coal in a more controlled primary combustion zone. NO_x reductions of 10-20% have been demonstrated using burner component upgrades with improved overall boiler operation. This paper gives a brief description of the component-only retrofit design methodology that Riley Power Inc., a Babcock Power Inc. company developed for other OEM's low NO_x burners in wall-fired furnaces. The numerical modeling to assist in the design of these low NO_x systems and the corresponding CFD results are also discussed.
机译:提高配备燃煤的运营和排放性能,配备了第一和第二代墙壁的燃烧锅炉低No_X煤炭燃烧器对许多公用事业公司来说都非常感兴趣。最近开发现有的第一和第二代壁式燃烧器的成本有效成分允许更好的燃烧性能,增加磨损寿命可靠性和降低的NO_X排放。现有的空气寄存器系统通常可以保持到位,导致资金成本减少和安装中的停电时间。计算流体动态(CFD)建模用于帮助设计键燃烧器组件和操作条件,使得能够进一步减少NO_X排放。结果包括更好的火焰附着,更好的气流再循环图案,以及在更受控的初级燃烧区中煤的早期点火和热解。使用燃烧器组件升级,通过改进的整体锅炉运行,已经证明了10-20%的NO_X减少。本文简要介绍了唯一改装设计方法,即Riley Power Inc.,Babcock Power Inc.公司为其他OEM的低No_x燃烧器开发的壁式炉子。还讨论了有助于设计这些低NO_X系统和相应的CFD结果的数值模型。

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