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1
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0025252445
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Outer acoustic streaming
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Lee, C.P.1
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2
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0036158568
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Acoustic streaming induced by ultrasonic flexural vibrations and associated enhancement of convective heat transfer
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Loh, B.1
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Kleinstreuer, C.4
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3
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0035248077
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Feasibility of using ultrasonic flexural waves as a cooling mechanism
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Ro, P.I., and Loh, B., "Feasibility of Using Ultrasonic Flexural Waves as a Cooling Mechanism," IEEE Industrial Electronics, Vol. 48, No. 1, 2000. pp. 143-150.
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Ro, P.I.1
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Acoustic streaming
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Lighthill, J.1
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6
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Acoustic streaming near a boundary
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Nyborg, W.L.1
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10
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Convective heat transfer from a sphere due to acoustic streaming
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April
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Gopinath, A., and Mills, F., "Convective Heat Transfer From a Sphere due to Acoustic Streaming," Journal of Heat Transfer, Vol. 115, April 1993, pp. 332-341.
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Gopinath, A.1
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11
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0028025760
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Convective heat transfer due to acoustic streaming across the ends of kundt tube
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Feb.
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Gopinath, A., and Mills, F., "Convective Heat Transfer due to Acoustic Streaming Across the Ends of Kundt Tube," Journal of Heat Transfer, Vol. 116, Feb. 1994, pp. 47-53.
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Gopinath, A.1
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12
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0029168356
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Acoustic enhancement of heat transfer between two parallel plates
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Vainshtein, P., Fichman, M., and Cutfinger, C., "Acoustic Enhancement of Heat Transfer Between Two Parallel Plates," International Journal of Heat and Mass Transfer, Vol. 38, No. 10, 1995, pp. 1893-1899.
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Vainshtein, P.1
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13
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0028730828
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Heat transfer to cylindrical bodies and small particles in an ultrasonic standing-wave fields of melt atomizer
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American Society of Mechanical Engineers, New York
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Uhlenwinkel, V., Meng, R., Bauckhage, K., Schreckenber, P., and Andersen, O., "Heat Transfer to Cylindrical Bodies and Small Particles in an Ultrasonic Standing-Wave Fields of Melt Atomizer," Multiphase-Flow and Heat Transfer in Materials Processing, FED-Vol. 201/HTD-Vol. 297, American Society of Mechanical Engineers, New York, 1994, pp. 19-24.
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Schreckenber, P.4
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14
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1242292890
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Numerical modeling of ultrasonic acoustic streaming effect on IC chips
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Wan, Q., and Kuznetsov, A. V., "Numerical Modeling of Ultrasonic Acoustic Streaming Effect on IC Chips," Proceedings of 2001 International Mechanical Engineering Congress and Exhibition, Vol. 1, American Society of Mechanical Engineers, New York, 2001, pp. 1-9.
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Wan, Q.1
Kuznetsov, A.V.2
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15
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0037256740
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Effect of non-uniformity of source vibration amplitude on the sound field wave number, Attenuation coefficient and Reynolds stress for the acoustic streaming
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Wan, Q., and Kuznetsov, A. V., "Effect of Non-Uniformity of Source Vibration Amplitude on the Sound Field Wave Number, Attenuation Coefficient and Reynolds Stress for the Acoustic Streaming," International Communications in Heat and Mass Transfer, Vol. 30, No. 1, 2003, pp. 27-36.
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Wan, Q.1
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16
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85086616374
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Heat transfer enhancement by utilizing standing and traveling waves to generate acoustic streaming in a rectangular gap
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Wan, Q., and Kuznetsov, A. V., "Heat Transfer Enhancement by Utilizing Standing and Traveling Waves to Generate Acoustic Streaming in a Rectangular Gap," Proceedings of the 8th Joint AIAA/ASME Thermophysics and Heat Transfer Conference, AIAA, Reston, VA, 2002, pp. 1-11.
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Proceedings of the 8th Joint AIAA/ASME Thermophysics and Heat Transfer Conference, AIAA, Reston, VA, 2002
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Wan, Q.1
Kuznetsov, A.V.2
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18
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84913265191
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Acoustic streaming at high Reynolds numbers
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Andres, J.M.1
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