Cavitation in water jet under high ambient pressure conditions

Experimental Thermal and Fluid Science - Tập 89 - Trang 9-18 - 2017
Kewen Peng1, Shouceng Tian1, Gensheng Li1, Zhongwei Huang1, Zhenxiang Zhang1
1State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum, Beijing 102249, China

Tài liệu tham khảo

Brennen, 2013 Hsiao, 2014, Modelling of material pitting from cavitation bubble collapse, J. Fluid Mech., 755, 142, 10.1017/jfm.2014.394 Flint, 1991, The temperature of cavitation, Science, 253, 1397, 10.1126/science.253.5026.1397 Johnson, 1984, Cavitating and structured jets for mechanical bits to increase drilling rate—Part I: Theory and concepts, ASME. J. Energy Resour. Technol., 106, 282, 10.1115/1.3231053 Li, 2005, Investigation and application of self-resonating cavitating water jet in petroleum engineering, Petrol. Sci. Technol., 23, 1, 10.1081/LFT-20009686218 Li, 2009, Hydraulic pulsed cavitating jet-assisted drilling, Petrol. Sci. Technol., 27, 197, 10.1080/10916460701700302 Liao, 2012, Experimental study on the effects of hydraulic confining pressure on impacting characteristics of jets, Atomiz. Spray, 22, 10.1615/AtomizSpr.2012005126 Li, 2016, Effects of nozzle inner surface roughness on the cavitation erosion characteristics of high speed submerged jets, Exp. Therm. Fluid Sci., 74, 444, 10.1016/j.expthermflusci.2016.01.009 Li, 2016, Effects of area discontinuity at nozzle inlet on the characteristics of high speed self-excited oscillation pulsed waterjets, Exp. Therm. Fluid Sci., 79, 254, 10.1016/j.expthermflusci.2016.07.013 Li, 2017, Experimental study on the effects of feeding pipe diameter on the cavitation erosion performance of self-resonating cavitating waterjet, Exp. Therm. Fluid Sci., 82, 314, 10.1016/j.expthermflusci.2016.11.029 Alehossein, 2007, Numerical analysis of Rayleigh-Plesset equation for cavitating water jets, Int. J. Numer. Methods Eng., 72, 780, 10.1002/nme.2032 Kumar, 2007, Conceptual design of a novel hydrodynamic cavitation reactor, Chem. Eng. Sci., 62, 2698, 10.1016/j.ces.2007.02.010 Kumar, 2012, Flow regime maps and optimization thereby of hydrodynamic cavitation reactors, AICHE J., 58, 3858, 10.1002/aic.13771 Wang, 2007, Application of piezoelectric PVDF film to the measurement of impulsive forces generated by cavitation bubble collapse near a solid boundary, Exp. Therm. Fluid Sci., 32, 403, 10.1016/j.expthermflusci.2007.05.003 Franc, 2011, Impact load measurements in an erosion cavitating flow, ASME J. Fluids Eng., 133, 121301, 10.1115/1.4005342 Singh, 2013, Characterization of cavitation fields from measured pressure signals of cavitating jets and ultrasonic horns, ASME J. Fluids Eng., 135, 091302, 10.1115/1.4024263 Knapp, 1955, Recent investigations of the mechanics of cavitation and cavitation damage, Trans. ASME, 77, 1045 Carnelli, 2012, Application of spherical nanoindentation to determine the pressure of cavitation impacts from pitting tests, J. Mater. Res., 27, 91, 10.1557/jmr.2011.259 Carnelli, 2012, Evaluation of the hydrodynamic pressure of cavitation impacts from stress–strain analysis and geometry of individual pits, Wear, 289, 104, 10.1016/j.wear.2012.04.009 K. Peng, G. Li, S. Tian, Zhongwei Huang, Z. Zhang, B. Zhu, X. Nie, Triggering cavitation in multilateral coiled tubing drilling by high pressure water jet, in: SPE/IATMI Asia Pacific Oil & Gas Conference and Exhibition, Bali, Indonesia, 2017. J. Yamada, K. Peng, T. Kokubun, T. Takiguchi, G. Li, M. Yamamoto, H. Soyama, Optimization of a cavitating jet for removing dental plaque from the surface of the screw of an implant and its practical application, J. Biomech. Sci. Eng. (in press). Roy, 2015, Cavitation erosion: using the target material as a pressure sensor, J. Appl. Phys., 118, 164905, 10.1063/1.4934747 Tabor, 2000 Abernethy, 1985, ASME measurement uncertainty, ASME J. Fluids Eng., 107, 161, 10.1115/1.3242450 Wiggert, 1979, The effect of gaseous cavitation on fluid transients, ASME. J. Fluids Eng., 101, 79, 10.1115/1.3448739 J.-L. Reboud, B. Stutz, O. Coutier, Two phase flow structure of cavitation: experiment and modeling of unsteady effects, in: Third International Symposium on Cavitation CAV1998, Grenoble, France, 1998. Singhal, 2002, Mathematical basis and validation of the full cavitation model, ASME. J. Fluids Eng., 124, 617, 10.1115/1.1486223 Rayleigh, 1917, VIII. On the pressure developed in a liquid during the collapse of a spherical cavity, London, Edinburgh, Dublin Philos. Mag. J. Sci., 34, 94, 10.1080/14786440808635681 Plesset, 1949, The dynamics of cavitation bubbles, J. Appl. Mech., 16, 277, 10.1115/1.4009975 Qin, 2007, Simulation of cavitation bubbles in a convergent–divergent nozzle water jet, J. Fluid Mech., 573, 1, 10.1017/S002211200600351X Supponen, 2015, The inner world of a collapsing bubble, Phys. Fluids, 27, 091113, 10.1063/1.4931098 Hutli, 2017, Experimental study on the influence of geometrical parameters on the cavitation erosion characteristics of high speed submerged jets, Exp. Therm. Fluid Sci., 80, 281, 10.1016/j.expthermflusci.2016.08.026 T. Momma, Cavitation loading and erosion produced by a cavitating jet, PhD thesis, University of Nottingham, 1991. Philipp, 1998, Cavitation erosion by single laser-produced bubbles, J. Fluid Mech., 361, 75, 10.1017/S0022112098008738 Hickling, 1964, Collapse and rebound of a spherical bubble in water, Phys. Fluids, 7, 7, 10.1063/1.1711058