首页> 外国专利> Feedback control method in v-shaped characteristic system, and NH3 injection rate control method for NOx removal apparatus using the same

Feedback control method in v-shaped characteristic system, and NH3 injection rate control method for NOx removal apparatus using the same

机译:V形特征系统中的反馈控制方法以及使用该反馈控制方法的NOx去除装置的NH3注入率控制方法

摘要

The present invention relates to an NH3 injection rate control technique for suppressing an NOX concentration to below a desired NOX concentration through the use of an NH3 injection rate reaching a minimum. In the NH3 injection rate control method for an NOX removal apparatus according to the invention, an operating area of the NOX removal apparatus is divided into a first area (I) in which a molar ratio (K', 240) of an NH3 injection rate (210) with respect to an NOX flow rate (204) at an inlet of the NOX removal apparatus is smaller than a molar ratio (K0) at a minimum point where an NOX concentration (PV, 221) assumes a minimum value and a second area (II) in which the molar ratio (K', 240) is equal to or larger than the minimum point molar ratio (K0), and a virtual NOx concentration (231) with respect to the molar ratio (K', 240) is set according to a virtual characteristic line which varies monotonically to stride across a desired operating point without rising with an increase of the molar ratio (K',240) from the first area (I) to the second area (II). Moreover, feedback control is implemented for adjusting the NH3 injection rate (210) with respect to the NOX flow rate (204) on the basis of a deviation between a desired NOX concentration (SV, 222) and the virtual NOX concentration (231) in a direction that the virtual NOX concentration (231) is brought close to the desired NOX concentration (SV, 222).
机译:NH 3喷射速率控制技术领域本发明涉及一种NH 3喷射速率控制技术,其通过使用达到最小的NH 3喷射速率来将NO X浓度抑制到期望的NO X浓度以下。在根据本发明的用于NO X去除装置的NH 3喷射速率控制方法中,将NO X去除装置的操作区域划​​分为第一区域(I),其中,NH 3喷射速率的摩尔比(K′,240)。 (210)相对于NOX去除装置入口处的NOX流量(204)小于在NOX浓度(PV,221)取最小值和最小值的最小点的摩尔比(K0)摩尔比(K',240)等于或大于最小点摩尔比(K0)的区域(II),相对于摩尔比(K',240)的虚拟NOx浓度(231)根据虚拟特征线来设定“ I”,该虚拟特征线从第一区域(I)到第二区域(II)随着摩尔比(K',240)的增加而单调变化以跨越期望的工作点而没有增加。此外,基于期望的NO X浓度(SV,222)和虚拟NO X浓度(231)之间的偏差,实施反馈控制以相对于NO X流量(204)调节NH 3注入速度(210)。使虚拟NOX浓度(231)接近期望的NOX浓度(SV,222)的方向。

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