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Thermodynamic modeling module of soot-blower control system for boiler

机译:锅炉吹灰控制系统的热力学建模模块

摘要

Purpose: To provide a thermodynamic modeling module of the incinerator boiler soot blower control system to achieve the optimum blowing of the soot to accurately infer the contamination of the furnace boiler.; Configuration: from the drum in the thermodynamic modeling module for comparing the actual figures with the reference value of the contamination level of the determining factors of the boiler by calculating the contamination level and boiler soot blower control system for determining the operations of the soot blower according to the pollution level, the boiler (6) calculating processing a signal obtained by sensing the amount of steam discharged calculation section 52, a section tangi heat absorption rate for calculating heat absorption rate in accordance with the signal sent from the normal sensor placed inside the boiler (6) calculating section ( 54), and a temperature-gas temperature calculation section (56 to measure the combustion gas through a sensor arranged in the boiler outlet side), and the calculation section 52, the section tangi heat absorption rate calculation section 54 and the calculated temperature of gas section 56 is a configuration diagram including a contamination level calculating section 58 for determining whether or not more than the reference range set by comparing the calculated calculation results to the pre-set reference value input in.; Effect: geotyieoseo inferring the contamination using the thermodynamic modeling module that soot blowers can function optimally in an incinerator boilers it is possible to precisely create the control amount of the soot blower is performed according to the pollution level inference result was minimize waste of steam, especially soot blower has an effect that can automatically prevent clogging inside the boiler easy to occur in the furnace boiler sikimeuroseo work.
机译:目的:提供焚化炉锅炉吹灰器控制系统的热力学建模模块,以实现吹灰的最佳方式,以准确推断出炉膛锅炉的污染。配置:从热力学建模模块中的滚筒中通过比较实际数字与锅炉污染物水平的决定因素的参考值确定污染物水平,并根据锅炉吹灰机控制系统确定吹灰机的运行状况到污染水平,锅炉(6)计算处理信号,该信号通过感测排出的蒸汽量计算部分52获得,该部分丹吉吸热率用于根据从放置在室内的正常传感器发送的信号计算吸热率。锅炉(6)计算部(54),温度-气体温度计算部(56,通过设置在锅炉出口侧的传感器对燃烧气体进行测定),计算部(52),唐吉吸热率计算部图54和计算出的气体部分56的温度是包括污染物的构造图电平计算部分58用于通过将计算的计算结果与输入的预设参考值进行比较来确定是否超过参考范围。效果:利用热力学建模模块推断煤烟鼓风机可以在焚化炉中发挥最佳作用的地质定型仪可以根据污染水平推断出精确控制烟鼓风机的量,从而推断出污染程度,从而最大程度地减少了蒸汽的浪费,特别是吹灰机具有可以自动防止锅炉内部发生堵塞的现象,在炉内锅炉sikimeuroseo工作中容易发生。

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