Paper
11 July 2024 Design and application of the gas turbine performance monitoring system based on digital twins
Zongxi Zhang, Zhitao Wang
Author Affiliations +
Abstract
The performance monitoring of gas turbine is an important global issue that is related to the stable and safe operation of gas turbine equipment. With the development of gas turbines, the complexity of its structure and the harsh conditions of high temperature and high pressure have brought many difficulties to measure. To a certain extent, it is impossible to measure even at the exit of the burning room or the high -voltage turbine inlet, which leads to how to use these available parameters to ensure the health state of the gas turbine. The emergence of digital twin technology provides a feasible way for the health monitoring of gas turbine, which has set off a wave in the field of gas turbine's health monitoring. Digital twin is a numerical copy based on physical data. It can truly reflect effective information and have the ability to self -correct and predict the future. This article focuses on the logical framework of the performance monitoring operation of the gas turbine, builds the calculation module and optimization function of the functional component of the gas turbine, and verified it through experiments. The results show that the system can be used for the construction of the digital twin model of the gas turbine, which has certain engineering significance for future performance monitoring.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Zongxi Zhang and Zhitao Wang "Design and application of the gas turbine performance monitoring system based on digital twins", Proc. SPIE 13210, Third International Symposium on Computer Applications and Information Systems (ISCAIS 2024), 132100R (11 July 2024); https://doi.org/10.1117/12.3034780
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Turbines

Sensors

Prototyping

Design

Signal filtering

Mathematical optimization

Data modeling

Back to Top