Paper
20 April 2023 Optimization of WFR strategy for ultra-supercritical units with high heating load
En Ren Liu, Qing Bin Yu, Song Gao, Jun Li, Yuan Yuan Li, Shuo Shi
Author Affiliations +
Proceedings Volume 12602, International Conference on Electronic Information Engineering and Computer Science (EIECS 2022); 126021S (2023) https://doi.org/10.1117/12.2668533
Event: International Conference on Electronic Information Engineering and Computer Science (EIECS 2022), 2022, Changchun, China
Abstract
A certain ultra supercritical unit has a rated load of 670mw and has been undertaking industrial steam supply for a long time, with a maximum steam supply of 500t / h. During the load change process of the unit, the main steam pressure and temperature fluctuate greatly, and the load regulation does not meet the requirements, so the unit cannot operate safely and stably. It is optimized from ratio of water quantity to coal quantity(WFR) strategy. The logic related to the correction of the intermediate point temperature on the fuel quantity is deleted. The position of the intermediate point is changed from the inlet of the primary superheater to the outlet of the steam water separator. The adjustment of the WFR through the intermediate point temperature is changed to the adjustment method based on the calculation of enthalpy value. The heating load is converted into electrical load and added to the boiler main control command. After optimization, the speed and accuracy of load regulation are greatly improved, and the main steam pressure and temperature fluctuate within a reasonable range. This optimization strategy can be used for reference for the same type of units.
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
En Ren Liu, Qing Bin Yu, Song Gao, Jun Li, Yuan Yuan Li, and Shuo Shi "Optimization of WFR strategy for ultra-supercritical units with high heating load", Proc. SPIE 12602, International Conference on Electronic Information Engineering and Computer Science (EIECS 2022), 126021S (20 April 2023); https://doi.org/10.1117/12.2668533
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Temperature metrology

Turbines

Reflection

Design and modelling

Logic

Temperature control

Control systems

Back to Top