负荷变化时三脉冲给水自动控制系统暂态过程的数学建模

D. Umurzakova
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引用次数: 3

摘要

分析了典型的蒸汽发生器供水三脉冲自动控制系统的运行情况。已经开发了一个数学模型来测试其减载的可操作性,允许您在没有全面测试的情况下设置水位的最大偏差,而无需通过鼓中的水位调整操作设置技术保护。在计算典型ACS过热蒸汽流量的内外扰动时,确定了静态调节误差的原因。一种典型的ACS电源现代化与蒸汽发生器用水的关系。总的来说,在各种影响下,与典型的三脉冲自动功率控制系统相比,调节质量得到了显着改善。介绍了一种典型的蒸汽发生器供水自动控制系统在大范围变化负荷下消除静态调节误差的现代化意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematical Modeling of Transient Processes of a Three-pulse System of Automatic Control of Water Supply to the Steam Generator When the Load Changes
The paper analyzes an operation of the typical three-impulse automatic control system (ACS) of the steam generator water supply. A mathematical model has been developed to test its operability for load shedding, allowing you to set maximum deviations of the water level without full-scale tests, without adjusting the operation settings technological protections by the level of water in the drum. Reasons identified static regulation errors when working out internal and external disturbances in the flow rate of superheated steam in a typical ACS. The relevance of modernization of a typical ACS power supply to the steam generator water. Altogether, under all influences, a significant improvement in the quality of regulation was obtained compared to a typical three-impulse automatic power control system. The relevance of modernization of a typical system of automatic control of water supply of a steam generator to eliminate static regulation errors in a wide range of changes loads.
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