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Harmonic Resonance Analysis of Shale Gas Distribution Network with Phased Load

DOI: 10.4236/jpee.2023.111002, PP. 18-28

Keywords: Shale Gas Distribution Grid, Harmonic Resonance, Modal Analysis Method, Active Power Filter

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Abstract:

Based on the background of achieving carbon peaking and carbon neutrality, the development and application of new high-power compressors, electric grid drilling RIGS and electric fracturing pump system provide new equipment support for the electric, green and intelligent development of shale gas fields in China. However, the harmonic pollution of shale gas grid becomes more serious due to the converter and frequency conversion device in the system, which easily causes harmonic resonance problem. Therefore, the harmonic resonance of shale gas grid is comprehensively analyzed and treated. Firstly, the working mechanism of compressor, electric drilling RIGS of the harmonic impedance model of electric fracturing pump system is established. Secondly, the main research methods of harmonic resonance analysis are introduced, and the basic principle of modal analysis is explained. Modal analysis method was used to analyze. Finally, harmonic resonance is suppressed. The results show that there may be multiple resonant frequency points in the distribution network changes, but these changes are relatively clear; if the original resonant frequency point of the resonant loop does not exist, the resonant frequency point disappears. The optimal configuration strategy of passive filter can effectively suppress harmonic resonance of distribution network in shale gas field.

References

[1]  Nie, H.K., He, Z.L. and Liu, G.X. (2020) Status and Direction of Shale Gas Exploration and Development in China. Journal of China University of Mining & Technology, 49, 13-35.
[2]  Hu, S.J., Li, J.L. and Xu, H.H. (2008) Analysis of Converter Configuration for Direct-Drive Wind Power System with PMSG. Electric Power Automation Equipment, 28, 77-81.
[3]  Peng, J.W., Zhou, Q., Dai, Q.P., et al. (2016) Development Status and Analysis of Domestic Large-Scale Fracturing Equipment. China Petroleum Machinery, 44, 82-86.
[4]  Nie, R.G., Cai, M.J., Mao, L.J., et al. (2019) Effect of Fracturing Conditions on the Stress Distribution of Shale Gas Well Casing. China Petroleum Machinery, 47, 139-146.
[5]  Zhao, X.P., Li, Z.B., Sun, F.D., et al. (2015) Research Status and Development Direction of Fracturing Truck. Natural Gas and Oil, 33, 56-58.
[6]  Ma, Z., Zhao, Z.G., Sun, Y.Y., et al. (2019) Key Technology and Development Prospect of New Generation Low Voltage DC Power Supply System. Automation of Electric Power System, 43, 12-22.
[7]  Liu, Y., Liu, C.H. and Fang, Q. (2019) Series-Connected Multilevel Voltage Disturbance Generator with Cascaded H-Bridge. Power Electronics, 53, 114-117.
[8]  Du, S.T. (2015) Key Technologies of Harmonic Suppression and Reactive Power Compensation. China University of Mining and Technology, Beijing.
[9]  Liu, X.X. (2019) Research on Control Strategy of Grid-Connected Inverter Based on Improved Adaptive Delay Filtering. Harbin Institute of Technology, Harbin.
[10]  Liu, X.Z. (2018) Harmonic Analysis and Treatment of Low Voltage Power Grid in Oilfield. Electric World, 59, 33-35.
[11]  Rahmani, S., Hamadi, A. and Al-Haddad, K. (2011) A Lyapunov-Function-Based Control for a Three-Phase Shunt Hybrid Active Filter. IEEE Transactions on Industrial Electronics, 59, 1418-1429. https://doi.org/10.1109/TIE.2011.2163370
[12]  Sasaki, H. and Machida, T. (1971) A New Method to Eliminate AC Harmonic Currents by Magnetic Flux Compensation-Considerations on Basic Design. IEEE Transactions on Power Apparatus & Systems, PAS-90, 2009-2019. https://doi.org/10.1109/TPAS.1971.292996
[13]  Akagi, H., Kanazawa, Y. and Nabae, A. (2008) Instantaneous Reactive Power Compensators Comprising Switching Devices without Energy Storage Components. IEEE Transactions on Industry Applications, IA-20, 625-630. https://doi.org/10.1109/TIA.1984.4504460

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