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ProSteam ― A Structured Approach To Steam System Improvement

机译:ProSteam-蒸汽系统改进的结构化方法

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摘要

Optimal operation of site utility systems is becoming an increasingly important part of any successful business strategy as environmental, legislative, and commercial pressures grow. A reliable steam model allows a clear understanding of the system and of any operational constraints. It can also be used to determine the true cost of improvement projects, relating any changes in steam demand back to purchased utilities (fuel, power, and make-up water) at the site boundary. Example projects could include improved insulation, better condensate return, increased process integration, new steam turbines, or even the installation of gas-turbine based cogeneration. This approach allows sites to develop a staged implementation plan for both operational and capital investment projects in the utility system. Steam system models can be taken one step further and linked to the site DCS data to provide real-time balances and improve the operation of the system, providing an inexpensive but very effective optimizer. Such a model ensures that the steam system is set in the optimum manner to react to current utility demands, emissions regulations, equipment availability, fuel and power costs, etc. This optimization approach typically reduces day-to-day utility system operating costs by between 1 percent and 5 percent at no capital cost.
机译:随着环境,立法和商业压力的增加,现场公用事业系统的最佳运行已成为任何成功业务战略中越来越重要的部分。可靠的蒸汽模型可让您清楚地了解系统和任何运行限制。它也可以用来确定改进项目的真实成本,将蒸汽需求的任何变化都与现场边界处的购买的公用事业(燃料,电力和补充水)联系起来。示例项目可能包括改善隔热性能,提高冷凝水回收率,提高工艺集成度,安装新的蒸汽轮机,甚至安装基于燃气轮机的热电联产。这种方法允许站点为公用事业系统中的运营和资本投资项目制定分阶段的实施计划。蒸汽系统模型可以更进一步,并与现场DCS数据链接,以提供实时平衡并改善系统的运行,从而提供一种廉价但非常有效的优化器。这样的模型可确保以最佳方式设置蒸汽系统,以对当前的公用事业需求,排放法规,设备可用性,燃料和电力成本等做出反应。这种优化方法通常可将公用事业系统的日常运行成本降低约无资本成本的1%和5%。

著录项

  • 来源
    《Energy Engineering》 |2003年第1期|p.59-79|共21页
  • 作者

    Alan Eastwood;

  • 作者单位

    Linnhoff March Ltd. Northwich, England;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 房屋建筑设备;
  • 关键词

  • 入库时间 2022-08-18 00:29:31

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