Analysis of the transient process in underwater spark discharges
Timoshkin, I. and Fouracre, R.A. and Given, M.J. and MacGregor, S.J.; (2007) Analysis of the transient process in underwater spark discharges. In: Proceedings of the 27th International Power Modulator Symposium and 2006 High Voltage Workshops. IEEE, USA, pp. 310-313. ISBN 9781424400188 (https://doi.org/10.1109/MODSYM.2006.365245)
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lf water is stressed with a voltage pulse having a rise time of tens of nanoseconds which creates a sufficiently high electric field, streamers develop and a highly conductive channel forms between the electrodes. The intense Joule heating of the plasma in the channel results in the collapse of its electrical resistance from a few Ohms to a few tens of milliOhms with the behavior of the collapse depending on the parameters of the discharge circuit. The rapid decrease of the resistance occurs during the first quarter of the current oscillation in the circuit. During this time, the pressure inside the channel rises to several GPa, causing the channel to expand in water with a velocity of 100 to 1000 m/s driving a high power ultrasound pulse. In the present paper, a phenomenological model is discussed which describes the dynamics of the resistance of underwater spark discharges during its initial stage and allows the pressure in the acoustic pulse to be obtained. The model is based on the plasma channel energy balance equation used by Braginskii and links the hydrodynamic characteristics of the channel and the parameters of the electric driving circuit. The dynamics of the transient cavity during the dissipation of the electrical energy in the plasma channel is described and the analytical results are compared with experimental measurements of the current in the electrical circuit and the acoustic pulse profiles radiated by the transient cavities.
ORCID iDs
Timoshkin, I. ORCID: https://orcid.org/0000-0002-0380-9003, Fouracre, R.A., Given, M.J. ORCID: https://orcid.org/0000-0002-6354-2486 and MacGregor, S.J. ORCID: https://orcid.org/0000-0002-0808-585X;-
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Item type: Book Section ID code: 40894 Dates: DateEvent29 May 2007PublishedSubjects: Technology > Electrical engineering. Electronics Nuclear engineering Department: Faculty of Engineering > Electronic and Electrical Engineering Depositing user: Pure Administrator Date deposited: 15 Aug 2012 13:00 Last modified: 11 Nov 2024 14:49 URI: https://strathprints.strath.ac.uk/id/eprint/40894