Zhi Tao Wang
Harbin Engineering University
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Publication
Featured researches published by Zhi Tao Wang.
Journal of Computer Applications in Technology | 2013
Yu–Long Ying; Yun peng Cao; Shu Ying Li; Zhi Tao Wang
The thermodynamic calculation software of Intercooled-Cycle gas turbine was developed to observe the impacts that the environmental parameters and cold degrees of intercooler produce quantitatively on this marine engine performance. And then, the mathematical model of intercooled-cycle gas turbine was established and the relative non-linear simulation model was also built based on MATLAB/SIMULINK to further study on flow parameters optimisation for marine gas turbine intercooler. At last, under a given structure size of intercooler, the impact of different liquid-side flow parameters on the intercooler system performance was analysed based on simulation model. The simulation experimental results show that the increase in glycol-water solution flow rate and seawater flow rate can improve the performance of the intercooled-cycle gas turbine to a degree, but the rational flow rates should be chosen according to the atmospheric condition and seawater temperature, and the optimal regulation rule was got.
Applied Mechanics and Materials | 2014
Zhi Tao Wang; Bing Bai; Shu Ying Li; Qing Cai Yang; Meng Qi Wang
Due to the fact that the low speed pump similarity theory is only applicable to incompressible fluid, this theory cannot be used for extrapolation of compressor performance curve. Considering the compressibility of working medium; therefore, this paper has modified the similarity theory and put forward a new index relationship equation. The two low speed performance lines which are already known were used to get the similar working points and extrapolate the performance lines through the optimization method. Compared with the existing performance lines, the results show that the method is simple, convenient and qualified with practicability and accuracy. This method plays an important role on studying startup process of a gas turbine and improving the accuracy of the simulation of startup process.
international conference on computer science and electronics engineering | 2013
Shu Ying Li; Tie Lei Li; Zhi Tao Wang
This paper summarizes integrated simulation technology development status of gas turbine equipment at home and abroad, makes comparative analysis of the deficiencies in the existing domestic research, forecasts the direction of development in the field of integrated simulation about gas turbine equipment at our country finally.
Applied Mechanics and Materials | 2013
Zhi Tao Wang; Tie Lei Li; Shu Ying Li; Yu Long Ying; Xiao Xia Huang
The simulation research on gas turbine generator set has the important practical significance for its main development direction in marine power plant. The research object is semi-physical simulation for marine gas turbine generator set. This paper presents a new type of semi-physical simulation scheme based on “hardware agent” through reviewing the existing the structure characteristics and deficiency of semi-physical simulation system of gas turbine device. The theoretical basis and operation control strategy and framework of the new project were discussed. The experiments on sudden load-up and load rejection were made based on new type of semi-physical simulation system for marine gas turbine set and had a good test effect.
Applied Mechanics and Materials | 2013
Shu Ying Li; Tie Lei Li; Zhi Tao Wang
Marine gas turbine generator set; Flywheel energy; Stability Abstract. Based on modular modeling idea, the modular model of marine generation system was set by the technology of systematic simulation. One set of simulation models of marine gas turbine generation system was generated. Results show that flywheel energy storage device can enhance the stability of power grid and play a better role in making marine gas turbine generation system stable under heavy load fluctuations.
Applied Mechanics and Materials | 2013
Zhi Tao Wang; Yu Long Ying; Shu Ying Li; Tie Lei Li
In order to ensure the quality of marine gas turbine generation set, its speed must maintain constant. Due to rising or falling power demand, the real and reactive power balance is harmed and hence the turbine output speed gets deviated from nominal value. This necessitates the need for an intelligent fuzzy controller to generate and deliver power in an interconnected system as economically and reliably as possible while maintaining the power turbine speed within permissible limits. The design of complex parameter self-tuning fuzzy control system and efficient simulation were achieved. The models were simulated for different load conditions in order to demonstrate the effectiveness of the proposed controller. Simulation results emphasized the improved performance in comparison with fixed gain controllers. The proposed method overcomes the drawbacks of a conventional fixed gain controller and improvement was achieved in terms of settling time, oscillations and overshoot.
Advanced Materials Research | 2013
Ning Bo Zhao; Shu Ying Li; Shuang Yi; Yun peng Cao; Zhi Tao Wang
This paper presents a new fusion diagnosis based on rough set and BP neural network for the fault diagnosis of gas turbine. The frame is designed to fusion fault diagnosis, which is composed by three parts: the rough set data pre-processor, rough set diagnosis model and BP neural network diagnosis model. Aiming at the difficulty in getting adequate fault samples in fault diagnosis, rough set theory is first used to process the original data, establish the decision table and generate rules, which can eliminate the redundant information and build the rough set diagnosis model. After that, according to the optimal decision attribute pre-treated by rough set, BP neural network is designed for fault diagnosis, which can reduce the scale of neural network, improve the identification rate, and improve the efficiency of the whole fusion diagnosis system. Finally, an example of gas turbine generator sets fuel system is taken as a case study to demonstrate the feasibility and validity of the proposed method in this paper.
Advanced Materials Research | 2012
Zhi Tao Wang; Shu Ying Li; Xiao Xia Huang; Tie Lei Li
Based on modular modeling idea, the modular model of marine generation system was set by the technology of systematic simulation. One set of simulation models of marine gas turbine generation system was generated. Results show that flywheel energy storage device can enhance the stability of power grid and play a better role in making marine gas turbine generation system stable under heavy load fluctuations.
Advanced Materials Research | 2011
Zhi Tao Wang; Shu Ying Li; Ping Ping Luo
As an important component of intercooled cycle gas turbine, intercooler directly affects the ratio power, thermal efficiency and various situation quality of gas turbine system. In this paper, efficiency-heat transfer units were used for the design of intercooler, and the structure parameters were optimized by genetic algorithm. The optimization results show that under the condition of required heat load and allowable pressure drop, the heat exchanger can be guaranteed as the smaller weight and the larger heat transfer efficiency, which can offer reference for the design of the actual intercooler.
Advanced Materials Research | 2010
Chun Ling Xie; Zhi Tao Wang
The Combined gas turbine and gas turbine (COGAG) power plant has being favored more and more by the navies of various countries because of its unique advantages such as good mobility and small weight. Therefore, the research on marine integrated propulsion systems (IPS) will have an important significance. The paper will mainly simulate the running performance of generating electricity module of COGAG power plant. The most excellent project of collectivity structure dispose can be achieved by simulating the running performance of generating electricity module of COGAG power plant. Also we can achieve collectivity performance, the most excellent matching; characteristic matching technology of working condition conversing. Especially the dynamic performance and control strategy of generating electricity module of COGAG power plant were mastered. The finally research production can supply technology foundation for designing the generating electricity module of COGAG power plant.