Artigos de revistas sobre o tema "Acoustic wave control in water"
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Norris, Andrew, Alexey S. Titovich e Michael Haberman. "Acoustic wave control with cylindrical metamaterial elements in water". Journal of the Acoustical Society of America 138, n.º 3 (setembro de 2015): 1733. http://dx.doi.org/10.1121/1.4933459.
Texto completo da fonteSISOMBAT, Félix, Thibaut DEVAUX, Samuel CALLé e Lionel HAUMESSER. "Acoustic reflector remotely tunable by the acoustic radiation force". INTER-NOISE and NOISE-CON Congress and Conference Proceedings 270, n.º 4 (4 de outubro de 2024): 7893–98. http://dx.doi.org/10.3397/in_2024_4019.
Texto completo da fonteHe, Jiahuan, Wei Zhang, Dan Zhao, Nong Li, Qiang Kang, Kunpeng Cai, Li Wang et al. "Numerical Simulation Analysis of Control Factors on Acoustic Velocity in Carbonate Reservoirs". Minerals 14, n.º 4 (19 de abril de 2024): 421. http://dx.doi.org/10.3390/min14040421.
Texto completo da fonteKos̆tial, Pavol. "Surface acoustic wave control of the ion concentration in water". Applied Acoustics 41, n.º 2 (1994): 187–93. http://dx.doi.org/10.1016/0003-682x(94)90068-x.
Texto completo da fonteKozaczka, Eugeniusz, Jacek Domagalski, Grażyna Grelowska e Ignacy Gloza. "Identification of hydro-acoustic waves emitted from floating units during mooring tests". Polish Maritime Research 14, n.º 4 (1 de outubro de 2007): 40–46. http://dx.doi.org/10.2478/v10012-007-0038-5.
Texto completo da fonteAnisimkin, Vladimir, Vladimir Kolesov, Anastasia Kuznetsova, Elizaveta Shamsutdinova e Iren Kuznetsova. "An Analysis of the Water-to-Ice Phase Transition Using Acoustic Plate Waves". Sensors 21, n.º 3 (29 de janeiro de 2021): 919. http://dx.doi.org/10.3390/s21030919.
Texto completo da fonteLi, Qi, Ke Wu e Mingquan Zhang. "Two-Dimensional Composite Acoustic Metamaterials of Rectangular Unit Cell from Pentamode to Band Gap". Crystals 11, n.º 12 (25 de novembro de 2021): 1457. http://dx.doi.org/10.3390/cryst11121457.
Texto completo da fonteKnight, Rosemary, Jack Dvorkin e Amos Nur. "Acoustic signatures of partial saturation". GEOPHYSICS 63, n.º 1 (janeiro de 1998): 132–38. http://dx.doi.org/10.1190/1.1444305.
Texto completo da fonteMemon, Maria Muzamil, Qiong Liu, Ali Manthar, Tao Wang e Wanli Zhang. "Surface Acoustic Wave Humidity Sensor: A Review". Micromachines 14, n.º 5 (27 de abril de 2023): 945. http://dx.doi.org/10.3390/mi14050945.
Texto completo da fonteM’zoughi, Fares, Izaskun Garrido, Aitor J. Garrido e Manuel De La Sen. "Rotational Speed Control Using ANN-Based MPPT for OWC Based on Surface Elevation Measurements". Applied Sciences 10, n.º 24 (16 de dezembro de 2020): 8975. http://dx.doi.org/10.3390/app10248975.
Texto completo da fonteXue, Xufeng, Baile Cui, Xianping Chen, Wen Wang, Mingchen Sun e Yong Liang. "Thermal Stress Analysis and Control Method for Surface Acoustic Wave Atomizer". Sensors 23, n.º 21 (26 de outubro de 2023): 8748. http://dx.doi.org/10.3390/s23218748.
Texto completo da fontePouya, C., K. Hoggard, S. H. Gossage, H. R. Peter, T. Poole e G. R. Nash. "Frequency dependence of surface acoustic wave swimming". Journal of The Royal Society Interface 16, n.º 155 (junho de 2019): 20190113. http://dx.doi.org/10.1098/rsif.2019.0113.
Texto completo da fonteBu, Qingtao, Tongju Xing, Chengfeng Li, Jinhuan Zhao, Changling Liu, Zihao Wang, Wengao Zhao, Jiale Kang, Qingguo Meng e Gaowei Hu. "Effect of Hydrate Microscopic Distribution on Acoustic Characteristics during Hydrate Dissociation: An Insight from Combined Acoustic-CT Detection Study". Journal of Marine Science and Engineering 10, n.º 8 (9 de agosto de 2022): 1089. http://dx.doi.org/10.3390/jmse10081089.
Texto completo da fonteXiao, Yan, e Xuesong Zhang. "Method for Establishing a Traveling Wave Sound Field with Adaptive Control in a Water-Filled Sound Tube". Applied Sciences 11, n.º 13 (22 de junho de 2021): 5785. http://dx.doi.org/10.3390/app11135785.
Texto completo da fonteZhu, Ping. "The Microfluid-Driven Control by Forced Wave". Key Engineering Materials 503 (fevereiro de 2012): 341–47. http://dx.doi.org/10.4028/www.scientific.net/kem.503.341.
Texto completo da fonteWang, Su, Yifan Shao, Jinsheng Duan, Huaidong He e Qingqing Xiao. "Effects of Sound Wave and Water Management on Growth and Cd Accumulation by Water Spinach (Ipomoea aquatica Forsk.)". Agronomy 12, n.º 10 (21 de setembro de 2022): 2257. http://dx.doi.org/10.3390/agronomy12102257.
Texto completo da fonteZhang, Naiqing, Yue Wen e James Friend. "MHz-Order Surface Acoustic Wave Thruster for Underwater Silent Propulsion". Micromachines 11, n.º 4 (16 de abril de 2020): 419. http://dx.doi.org/10.3390/mi11040419.
Texto completo da fonteManikandan, M., e A. Rajiv Kannan. "Provisioning Intelligent Water Wave Optimization Approach for Underwater Acoustic Wireless Sensor Networks". Computer Systems Science and Engineering 43, n.º 2 (2022): 625–41. http://dx.doi.org/10.32604/csse.2022.022662.
Texto completo da fonteNazarchuk, Z. T., T. I. Voronyak, O. G. Kuts, I. V. Stasyshyn e I. B. Ivasenko. "Using of acoustic resonance for detection and identification of hidden defects in polymer layered composites". Information extraction and processing 2022, n.º 50 (19 de dezembro de 2022): 46–53. http://dx.doi.org/10.15407/vidbir2022.50.046.
Texto completo da fonteSun, Fei, Tingfeng Ma, Pengfei Kang, Yuming Yao, Ning Gan, Lili Yuan, Wenhui Hu, Iren Kuznetsova e Ilya Nedospasov. "Pure- and Pseudo-Lateral-Field-Excitation Characteristics of Relaxor Ferroelectric Single Crystal PMN-PT". Micromachines 14, n.º 6 (28 de maio de 2023): 1136. http://dx.doi.org/10.3390/mi14061136.
Texto completo da fonteLiu, Tao, Jian Gan Wang e Si Guang Zong. "Experimental Investigation on Underwater Opto-Acoustic Communication". Applied Mechanics and Materials 143-144 (dezembro de 2011): 653–57. http://dx.doi.org/10.4028/www.scientific.net/amm.143-144.653.
Texto completo da fonteUzhansky, Ernst, Maya Friedlender e Izhak Bucher. "Optimizing parametric acoustic arrays for high-fidelity low-frequency signals". Journal of the Acoustical Society of America 155, n.º 3_Supplement (1 de março de 2024): A344. http://dx.doi.org/10.1121/10.0027767.
Texto completo da fonteHasheminejad, S. M., e H. Hosseini. "Radiation Loading of a Cylindrical Source in a Fluid-Filled Cylindrical Cavity Embedded Within a Fluid-Saturated Poroelastic Medium". Journal of Applied Mechanics 69, n.º 5 (16 de agosto de 2002): 675–83. http://dx.doi.org/10.1115/1.1488664.
Texto completo da fonteWang, Xiao-Hui, Qiang Xu, Ya-Nan He, Yun-Fei Wang, Yi-Fei Sun, Chang-Yu Sun e Guang-Jin Chen. "The Acoustic Properties of Sandy and Clayey Hydrate-Bearing Sediments". Energies 12, n.º 10 (14 de maio de 2019): 1825. http://dx.doi.org/10.3390/en12101825.
Texto completo da fonteLi, Dekang, Xin Wang, Tian Li, Luying Yang, Yuhong Liu, Fei Wang, Yuwei Xu e Yang Yang. "Research Progress on the Impact of Acoustic Waves on the Agglomeration of Oily Fine Particles in Industrial Oil Mist Environment". Buildings 13, n.º 8 (29 de julho de 2023): 1937. http://dx.doi.org/10.3390/buildings13081937.
Texto completo da fonteCao, Hiep Xuan, Daewon Jung, Han-Sol Lee, Gwangjun Go, Minghui Nan, Eunpyo Choi, Chang-Sei Kim, Jong-Oh Park e Byungjeon Kang. "Micromotor Manipulation Using Ultrasonic Active Traveling Waves". Micromachines 12, n.º 2 (13 de fevereiro de 2021): 192. http://dx.doi.org/10.3390/mi12020192.
Texto completo da fonteA, Rajeswari, Duraipandian N, Shanker NR e Betty Elezebeth Samuel. "Improving Packet Delivery Performance in Water Column Variations through LOCAN in Underwater Acoustic Sensor Network". Journal of Sensors 2020 (20 de fevereiro de 2020): 1–16. http://dx.doi.org/10.1155/2020/7960654.
Texto completo da fonteBradley, Stuart, Anna Radionova, Chandra Ghimire, Laura Grundy, Seth Laurenson e Val Snow. "Irrigation Control through Acoustic Proximal Sensing of the Onset of Surface Water". Remote Sensing 12, n.º 22 (19 de novembro de 2020): 3800. http://dx.doi.org/10.3390/rs12223800.
Texto completo da fonteJAMALUDDIN, A. R., G. J. BALL, C. K. TURANGAN e T. G. LEIGHTON. "The collapse of single bubbles and approximation of the far-field acoustic emissions for cavitation induced by shock wave lithotripsy". Journal of Fluid Mechanics 677 (27 de abril de 2011): 305–41. http://dx.doi.org/10.1017/jfm.2011.85.
Texto completo da fonteFeddersen, Falk. "Quality Controlling Surf Zone Acoustic Doppler Velocimeter Observations to Estimate the Turbulent Dissipation Rate". Journal of Atmospheric and Oceanic Technology 27, n.º 12 (1 de dezembro de 2010): 2039–55. http://dx.doi.org/10.1175/2010jtecho783.1.
Texto completo da fonteJukna, V., S. Albert, C. Millon, B. Mahieu, R. Guillermin, G. Rabau, D. Fattaccioli, A. Mysyrowicz, A. Couairon e A. Houard. "Control of the acoustic waves generated by intense laser filamentation in water". Optics Express 30, n.º 6 (3 de março de 2022): 9103. http://dx.doi.org/10.1364/oe.453749.
Texto completo da fonteSupichayanggoon, Kacharat, Theodore Brockman e Andres H. La Rosa. "Acoustic monitoring humidity effects on the formation of water bridges at sharp contacts". Journal of Physics: Conference Series 2678, n.º 1 (1 de dezembro de 2023): 012010. http://dx.doi.org/10.1088/1742-6596/2678/1/012010.
Texto completo da fonteCardenas, J. I., e C. Vargas-Hernández. "Elastic Module Study of the Radial Section ofGuadua angustifoliaKunth Variety Bicolor". Advances in Materials Science and Engineering 2014 (2014): 1–5. http://dx.doi.org/10.1155/2014/935206.
Texto completo da fonteKida, Tomoha, Yuichiro Sueoka, Hiro Shigeyoshi, Yusuke Tsunoda, Yasuhiro Sugimoto e Koichi Osuka. "Verification of Acoustic-Wave-Oriented Simple State Estimation and Application to Swarm Navigation". Journal of Robotics and Mechatronics 33, n.º 1 (20 de fevereiro de 2021): 119–28. http://dx.doi.org/10.20965/jrm.2021.p0119.
Texto completo da fonteGaeta, Maria Gabriella, Massimo Guerrero, Sara Mizar Formentin, Giuseppina Palma e Barbara Zanuttigh. "Non-Intrusive Measurements of Wave-Induced Flow over Dikes by Means of a Combined Ultrasound Doppler Velocimetry and Videography". Water 12, n.º 11 (30 de outubro de 2020): 3053. http://dx.doi.org/10.3390/w12113053.
Texto completo da fonteRuiken, Jan-Paul, Jörn Villwock e Matthias Kraume. "Behaviour of Acoustically Levitated Drops in Mid-Water". Micromachines 14, n.º 10 (10 de outubro de 2023): 1923. http://dx.doi.org/10.3390/mi14101923.
Texto completo da fonteLopes, Rubens M., Claudia Guimarães, Felipe M. Neves, Leandro T. De-La-Cruz, Gelaysi Moreno Vega, Damián Mizrahi e Julio Cesar Adamowski. "The Effect of Ultrasound Waves on the Pre-Settlement Behavior of Barnacle Cyprid Larvae". Journal of Marine Science and Engineering 12, n.º 8 (11 de agosto de 2024): 1364. http://dx.doi.org/10.3390/jmse12081364.
Texto completo da fonteGimaltdinov, I. K., e A. S. Rodionov. "ON THE EFFECT OF CAPILLARY FORCES ON PULSE DYNAMICS IN A POROUS MEDIUM". Petroleum Engineering 22, n.º 6 (24 de dezembro de 2024): 194–202. https://doi.org/10.17122/ngdelo-2024-6-194-202.
Texto completo da fonteErofeev, V. I., A. V. Ilyahinskii, E. A. Motova, V. M. Rodyushkin e A. V. Shekoyan. "ON THE ACOUSTIC PARAMETERS OF METAL CONSTRUCTIONWHEN DAMAGE IS ACCUMULATED". Problems of strenght and plasticity 83, n.º 3 (2021): 344–53. http://dx.doi.org/10.32326/1814-9146-2021-83-3-344-353.
Texto completo da fonteKhaksar, A. "CALIBRATING CORE, LOG AND SEISMIC DATA TO ASSESS EFFECTIVE STRESS AND HYDROCARBON SATURATION, COOPER BASIN, SOUTH AUSTRALIA". APPEA Journal 40, n.º 1 (2000): 314. http://dx.doi.org/10.1071/aj99017.
Texto completo da fonteValent, Peter, Roman Výleta e Michaela Danáčová. "A Joint Sedimentation-Flood Retention Assessment of a Small Water Reservoir in Slovakia: A New Hope for Old Reservoirs?" Geosciences 9, n.º 4 (3 de abril de 2019): 158. http://dx.doi.org/10.3390/geosciences9040158.
Texto completo da fonteAlmawgani, Abdulkarem H. M., Hamza Makhlouf Fathy, Ghassan Ahmed Ali, Hussein A. Elsayed e Ahmed Mehaney. "One-Dimensional Phononic Crystals: A Simplified Platform for Effective Detection of Heavy Metals in Water with High Sensitivity". Micromachines 14, n.º 1 (13 de janeiro de 2023): 204. http://dx.doi.org/10.3390/mi14010204.
Texto completo da fonteMiller, Alexander, Boris Miller e Gregory Miller. "Navigation of Underwater Drones and Integration of Acoustic Sensing with Onboard Inertial Navigation System". Drones 5, n.º 3 (26 de agosto de 2021): 83. http://dx.doi.org/10.3390/drones5030083.
Texto completo da fonteKottapalli, Shravan, Stijn van Aken, Avraham Hirschberg, Nicholas Waterson, David Smeulders e Gunes Nakiboglu. "Influence of orifice thickness and chamfer on broadband noise in a water circuit". Acta Acustica 7 (2023): 66. http://dx.doi.org/10.1051/aacus/2023058.
Texto completo da fonteZhu, Shan, Guojun Zhang, Daiyue Wu, Xiaoqi Liang, Yifan Zhang, Ting Lv, Yan Liu, Peng Chen e Wendong Zhang. "Research on Direction of Arrival Estimation Based on Self-Contained MEMS Vector Hydrophone". Micromachines 13, n.º 2 (30 de janeiro de 2022): 236. http://dx.doi.org/10.3390/mi13020236.
Texto completo da fontePao, Chun-Hung, Jia-Lin Chen, Shih-Feng Su, Yu-Ching Huang, Wen-Hsin Huang e Chien-Hung Kuo. "The Effect of Wave-Induced Current and Coastal Structure on Sediment Transport at the Zengwen River Mouth". Journal of Marine Science and Engineering 9, n.º 3 (17 de março de 2021): 333. http://dx.doi.org/10.3390/jmse9030333.
Texto completo da fonteCominelli, Sebastiano, e Francesco Braghin. "Optimal design of broadband, low-directivity graded index acoustic lenses for underwater communication". Journal of the Acoustical Society of America 156, n.º 3 (1 de setembro de 2024): 1952–63. http://dx.doi.org/10.1121/10.0029025.
Texto completo da fonteMARR-LYON, MARK J., DAVID B. THIESSEN e PHILIP L. MARSTON. "Stabilization of a cylindrical capillary bridge far beyond the Rayleigh–Plateau limit using acoustic radiation pressure and active feedback". Journal of Fluid Mechanics 351 (25 de novembro de 1997): 345–57. http://dx.doi.org/10.1017/s002211209700726x.
Texto completo da fonteMajnooni, Meysam, Elise Doveri, Jeanne Baldisser, Vincent Long, Julien Houles, Jean-Claude Scimeca, David Momier, Carine Guivier-Curien, Philippe Lasaygues e Cécile Baron. "Anti-reflection cover to control acoustic intensity in in vitro low-intensity ultrasound stimulation of cells". Acta Acustica 6 (2022): 11. http://dx.doi.org/10.1051/aacus/2022007.
Texto completo da fonteJózefczak, A., e R. Wlazło. "Ultrasonic Studies of Emulsion Stability in the Presence of Magnetic Nanoparticles". Advances in Condensed Matter Physics 2015 (2015): 1–9. http://dx.doi.org/10.1155/2015/398219.
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