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ERRORS IN BOILER EFFICIENCY STANDARDS

机译:锅炉效率标准中的错误

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摘要

This paper presents both criticism and suggested changes to boiler efficiency standards associated with fossil-fired steam generators. These standards include the widely used ASME PTC 4.1, PTC 4 and DIN 1942, and others. The chief criticism is inconsistent application of thermodynamic principles. Specifically, conceptual errors are made with application of reference temperatures and the treatment of shaft powers.rnWhen using computed fuel flow as a touchstone, it becomes obvious that arbitrary use of reference temperatures and/or use of capricious energy credits cannot dictate a system's computed fuel flow. Efficiency, calorific value and fuel flow must have fixed definitions concomitant with a system's useful energy flow. Thermodynamics is not an arbitrary discipline, the computed fuel needs of a system must describe the actual. Boiler efficiency requires the same treatment, as an absolute value, as actual fuel feed and emission flow.rnBoiler efficiencies and associated calorific values have obvious standing when judging contractual obligations, for thermal performance monitoring, and for confirming carbon emissions. Note that a 0.5 to 1% change in efficiency may well have significant financial consequences when testing a new unit, or the on-going costs associated with fuel and carbon taxes. This paper demonstrates that errors greater than 2% are entirely possible if following the current standards. This paper appeals to the resolution of efficiency at the 0.1% level.rnThe power plant engineer is encouraged to read thernIntroduction and Summary & Recommendations sections while the thermodynamicist is requested to throughly review and critique the mid-sections. The author hopes such reviews will advocate for improvement of these important industrial standards.
机译:本文既提出了批评,也提出了与化石燃料蒸汽发生器相关的锅炉效率标准的变更建议。这些标准包括广泛使用的ASME PTC 4.1,PTC 4和DIN 1942等。主要批评是热力学原理的不一致应用。特别是,在使用参考温度和轴功率的处理过程中会产生概念上的错误。rn当使用计算的燃料流量作为试金石时,很明显,任意使用参考温度和/或使用反复变化的能源信用都不能决定系统的计算燃料流。效率,热值和燃料流量必须具有与系统的有用能量流量相对应的固定定义。热力学不是一个任意学科,系统计算出的燃料需求必须描述实际情况。锅炉效率需要与实际燃料进料和排放流量相同的绝对值处理。rn锅炉效率和相关的热值在判断合同义务,监控热性能和确认碳排放时具有明显的地位。请注意,在测试新设备时效率的0.5%到1%的变化可能会带来重大的财务后果,或者与燃料和碳税相关的持续成本。本文证明,如果遵循当前标准,则完全有可能出现大于2%的误差。本文呼吁在0.1%的水平上解决效率问题。鼓励电厂工程师阅读“简介”和“摘要与建议”部分,同时请热力学专家对中间部分进行全面审查和批判。作者希望这样的评论将提倡改善这些重要的工业标准。

著录项

  • 来源
    《》|2009年|P.487-501|共15页
  • 会议地点 Albuquerque NM(US);Albuquerque NM(US)
  • 作者

    Fred D. Lang;

  • 作者单位

    Exergetic Systems, Inc. San Rafael, California 94901;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 输配电工程、电力网及电力系统;
  • 关键词

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