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An approach to optimum combustion control using parallel type and cross-limiting type technique

机译:一种使用并行型和交叉限制型技术的最佳燃烧控制方法

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摘要

In the paper, a new approach to the combustion control by introducing the parallel type air-fuel combustion control and cross-limiting type (or lead-lag type) combustion control technique designed in one control system in a boiler is presented. This new approached combustion control system is designed in such way that controlled the air-fuel ratio in furnace in parallel way for small steam demand variation and in cross-limiting way for high steam demand variation. This approach does not require any extra field instrumentation or modified process parameter. All original instruments are used to measure the process parameters for combustion control and final control elements controlled the process. It is shown that air and fuel flow can be successfully optimized for the required steam demand by new designed combustion control. The accurate air-fuel ratio obtained in the proposed technique also minimizes some problems of the conventional system like incomplete combustion during sudden load change, boiler stuck-up problem and bump problem. The complete derivation of the required mathematical models is reported in the paper. Performance of three boilers incorporated with the proposed system is observed for a long period and the performance report is presented. A very efficient performance in three boilers has been observed.
机译:提出了一种通过在锅炉的一个控制系统中设计的并行型空燃燃烧控制和交叉限制型(或超前滞后型)燃烧控制技术来进行燃烧控制的新方法。这种新近采用的燃烧控制系统的设计方式是:以并行方式控制炉中的空燃比,以减小蒸汽需求量的变化,以交叉限制的方式控制高蒸汽需求量的变化。这种方法不需要任何额外的现场检测或修改的过程参数。所有原始仪器都用于测量燃烧控制的过程参数,而最终控制元素则控制过程。结果表明,通过新设计的燃烧控制,可以针对所需的蒸汽需求成功地优化空气和燃料流量。所提出的技术获得的准确的空燃比还最小化了常规系统的一些问题,例如在突然的负载变化期间不完全燃烧,锅炉卡住问题和爆震问题。本文报道了所需数学模型的完整推导。长期观察了与拟议系统结合的三台锅炉的性能,并提出了性能报告。已经观察到在三个锅炉中非常有效的性能。

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