Artigos de revistas sobre o tema "Continous blowing"
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McCulloch, John G. "The History of the Development of Melt Blowing Technology". International Nonwovens Journal os-8, n.º 1 (março de 1999): 1558925099OS—80. http://dx.doi.org/10.1177/1558925099os-800123.
Texto completo da fonteMargaris, P., e I. Gursul. "Wing tip vortex control using synthetic jets". Aeronautical Journal 110, n.º 1112 (outubro de 2006): 673–81. http://dx.doi.org/10.1017/s0001924000001536.
Texto completo da fonteYang, Chenghao, Elias J. G. Arcondoulis, Yannian Yang, Jing Guo, Reza Maryami, Chuanxing Bi e Yu Liu. "Active control of airfoil turbulent boundary layer noise with trailing-edge blowing". Journal of the Acoustical Society of America 153, n.º 4 (abril de 2023): 2115–30. http://dx.doi.org/10.1121/10.0017787.
Texto completo da fonteLi, Wenjie, Shibo Wang, Jianxin Xu, Jianhang Hu, Hua Wang, Yuling Zhai, Qingtai Xiao, Ge Deng e Dongbo Li. "Numerical Investigation of the Enhanced Stirring Characteristics of a Multi-Lance Top-Blowing Continuous Converting Furnace for Lance Arrangement and Variable-Velocity Blowing". Energies 16, n.º 5 (2 de março de 2023): 2412. http://dx.doi.org/10.3390/en16052412.
Texto completo da fonteMeijie, Z., G. Huazhi, H. Ao, Z. Hongxi e D. Chengji. "Numerical simulation and industrial practice of inclusion removal from molten steel by gas bottom-blowing in continuous casting tundish". Journal of Mining and Metallurgy, Section B: Metallurgy 47, n.º 2 (2011): 137–47. http://dx.doi.org/10.2298/jmmb110120006m.
Texto completo da fonteSugiura, Konosuke, e Tetsuo Ohata. "Large-scale characteristics of the distribution of blowing-snow sublimation". Annals of Glaciology 49 (2008): 11–16. http://dx.doi.org/10.3189/172756408787814960.
Texto completo da fonteAyuni, Farihah, Gina Selvia Rahayu, Nesty Ermin Nadhirah, Tegar Selaras Gustavisiana e Hisny Fajrussalam. "Perspektif Islam terhadap “Kaum Majusi” Modern". YASIN 3, n.º 3 (7 de maio de 2023): 342–51. http://dx.doi.org/10.58578/yasin.v3i3.1080.
Texto completo da fonteWang, Dazhi, Fang Gao, Lidong Xing, Jianhua Chu e Yanping Bao. "Continuous Prediction Model of Carbon Content in 120 t Converter Blowing Process". Metals 12, n.º 1 (14 de janeiro de 2022): 151. http://dx.doi.org/10.3390/met12010151.
Texto completo da fonteYoshinaga, Etsuo. "Blow Analytic Mappings and Functions". Canadian Mathematical Bulletin 36, n.º 4 (1 de dezembro de 1993): 497–506. http://dx.doi.org/10.4153/cmb-1993-065-1.
Texto completo da fonteZhang, M. J., H. Z. Gu, A. Huang, H. X. Zhu e C. J. Deng. "Physical and mathematical modeling of inclusion removal with gas bottom-blowing in continuous casting tundish". Journal of Mining and Metallurgy, Section B: Metallurgy 47, n.º 1 (2011): 37–44. http://dx.doi.org/10.2298/jmmb1101037z.
Texto completo da fonteYamaguchi, Gaku, Hiroyuki Miura, Eiji Nakajima e Norihiko Ikeda. "Head-down tilt position successfully prevent severe brain air embolism". SAGE Open Medical Case Reports 6 (janeiro de 2018): 2050313X1880926. http://dx.doi.org/10.1177/2050313x18809265.
Texto completo da fonteJackson, Richard, Zhijin Wang e Ismet Gursul. "Control of Upswept Afterbody Vortices Using Continuous and Pulsed Blowing". Journal of Aircraft 57, n.º 1 (janeiro de 2020): 76–92. http://dx.doi.org/10.2514/1.c035639.
Texto completo da fonteChono, Shigeomi, Yoshiyuki Iemoto e Takashi Terachi. "Model experiment on interlaced yarn. Part 5: Continuous blowing method." Sen'i Kikai Gakkaishi (Journal of the Textile Machinery Society of Japan) 43, n.º 7 (1990): T53—T61. http://dx.doi.org/10.4188/transjtmsj.43.7_t53.
Texto completo da fonteFichou, Goulwen, Jean-Philippe Monnier e Ronan Quarez. "Continuous functions on the plane regular after one blowing-up". Mathematische Zeitschrift 285, n.º 1-2 (1 de junho de 2016): 287–323. http://dx.doi.org/10.1007/s00209-016-1708-8.
Texto completo da fonteBaek, Soo-Whang, e Sang Wook Lee. "Aerodynamic drag reduction on a realistic vehicle using continuous blowing". Microsystem Technologies 26, n.º 1 (22 de fevereiro de 2019): 11–23. http://dx.doi.org/10.1007/s00542-019-04355-w.
Texto completo da fonteCoulthard, Sarah M., Ralph J. Volino e Karen A. Flack. "Effect of Jet Pulsing on Film Cooling—Part II: Heat Transfer Results". Journal of Turbomachinery 129, n.º 2 (31 de maio de 2006): 247–57. http://dx.doi.org/10.1115/1.2437230.
Texto completo da fonteXiao, Shi Cheng, L. P. Zhang, Li Yong Ni, Wen Hua Yang e H. L. Liu. "Comparison of Stretching with Horizontal V-Shaped Anvils and Common Flat Anvils". Materials Science Forum 628-629 (agosto de 2009): 611–16. http://dx.doi.org/10.4028/www.scientific.net/msf.628-629.611.
Texto completo da fonteSingh, S. N., S. B. Burns, J. S. Costa e V. Bonapersona. "Method of Increasing the Solubility of Hydrocarbons and HFCs in Polyurethanes Raw Materials and the Effects on the Performance and Processing Characteristics of Construction Foams*". Cellular Polymers 16, n.º 6 (novembro de 1997): 1–24. http://dx.doi.org/10.1177/0262489319971606004.
Texto completo da fonteLi, Yang, Changgui Cheng, Minglei Yang, Zhixuan Dong e Zhengliang Xue. "Behavior Characteristics of Argon Bubbles on Inner Surface of Upper Tundish Nozzle during Argon Blowing Process". Metals 8, n.º 8 (30 de julho de 2018): 590. http://dx.doi.org/10.3390/met8080590.
Texto completo da fonteDong, Kai, e Xueliang Wang. "CO2 Utilization in the Ironmaking and Steelmaking Process". Metals 9, n.º 3 (28 de fevereiro de 2019): 273. http://dx.doi.org/10.3390/met9030273.
Texto completo da fonteCoulthard, Sarah M., Ralph J. Volino e Karen A. Flack. "Effect of Jet Pulsing on Film Cooling—Part I: Effectiveness and Flow-Field Temperature Results". Journal of Turbomachinery 129, n.º 2 (31 de maio de 2006): 232–46. http://dx.doi.org/10.1115/1.2437231.
Texto completo da fonteMoore, Robert E. "Refractories: Something Old and Something New". MRS Bulletin 14, n.º 11 (novembro de 1989): 34–37. http://dx.doi.org/10.1557/s0883769400061182.
Texto completo da fonteTurpin, Aaron M., Daniel Chin e Kenneth Granlund. "Supersonic Cavity Flow Subjected to Continuous and Transient Leading-Edge Blowing". AIAA Journal 58, n.º 10 (outubro de 2020): 4415–25. http://dx.doi.org/10.2514/1.j059267.
Texto completo da fonteFiorot, Jean-Charles, e Olivier Gibaru. "Blowing-up method. Application to G2-continuous filling surfaces in CAD". Comptes Rendus de l'Académie des Sciences - Series I - Mathematics 330, n.º 7 (abril de 2000): 623–28. http://dx.doi.org/10.1016/s0764-4442(00)00231-7.
Texto completo da fonteChen, Cha'o-Kuang, e Ming-I. Char. "Heat transfer of a continuous, stretching surface with suction or blowing". Journal of Mathematical Analysis and Applications 135, n.º 2 (novembro de 1988): 568–80. http://dx.doi.org/10.1016/0022-247x(88)90172-2.
Texto completo da fonteFiorot, Jean-Charles, e Olivier Gibaru. "Blowing up: application to $G^2$ -continuous 8-sided filling patch". Numerische Mathematik 92, n.º 2 (1 de agosto de 2002): 257–87. http://dx.doi.org/10.1007/s002110100366.
Texto completo da fonteKayser, John C., e Robert L. Shambaugh. "The manufacture of continuous polymeric filaments by the melt-blowing process". Polymer Engineering and Science 30, n.º 19 (outubro de 1990): 1237–51. http://dx.doi.org/10.1002/pen.760301908.
Texto completo da fonteFransson, J. H. M., P. Konieczny e P. H. Alfredsson. "Flow around a porous cylinder subject to continuous suction or blowing". Journal of Fluids and Structures 19, n.º 8 (novembro de 2004): 1031–48. http://dx.doi.org/10.1016/j.jfluidstructs.2004.06.005.
Texto completo da fonteLiang, Xu, Zhang Ge e Wang Bo. "Application of Oxygen-enriched Side-blowing Technology in Treating Zinc Leaching Residue in China". Journal of Physics: Conference Series 2738, n.º 1 (1 de abril de 2024): 012023. http://dx.doi.org/10.1088/1742-6596/2738/1/012023.
Texto completo da fonteLi, Canyang, Wenkai Fu e Xi Meng. "A Contrast Experiment on the Ventilation Direction towards Human Head in Personalized Environmental Control System (PECS)". Sustainability 16, n.º 13 (3 de julho de 2024): 5704. http://dx.doi.org/10.3390/su16135704.
Texto completo da fonteMammadov, Arif, Aqil Babayev, Nizami Ismayilov, Muxtar Huseynov e Faiq Guliyev. "Improvement of Production Processes of Seamless Steel Pipes for Oil and Gas Production". Key Engineering Materials 979 (5 de abril de 2024): 63–71. http://dx.doi.org/10.4028/p-i7keoa.
Texto completo da fonteDjojodihardjo, Harijono. "Overview of Coănda Jet and Vortex Cell Circulation Control". Applied Mechanics and Materials 564 (junho de 2014): 118–25. http://dx.doi.org/10.4028/www.scientific.net/amm.564.118.
Texto completo da fonteTong, Xinting, Xiaohui Zhang, Rui Feng, Jinhu Lin e Hua Wang. "Numerical simulation of continuous bubbles motion behavior with different lance spacings". Thermal Science, n.º 00 (2022): 204. http://dx.doi.org/10.2298/tsci220813204t.
Texto completo da fonteAlter, M. A., O. L. Chaika, B. V. Kornilov e A. O. Moskalyna. "Analysis of the development of blast furnace blowing technologies in the 20th and 21st centuries". Fundamental and applied problems of ferrous metallurgy 37 (2023): 26. http://dx.doi.org/10.52150/2522-9117-2023-37-26-49.
Texto completo da fonteTung Pham Duy, Tomoaki Watanabe e Koji Nagata. "LES Investigation of a Piston-driven Synthetic Jet Actuator with Multiple Orifices". CFD Letters 16, n.º 1 (29 de novembro de 2023): 150–70. http://dx.doi.org/10.37934/cfdl.16.1.150170.
Texto completo da fonteIvdre, Aiga, Anda Fridrihsone-Girone, Arnis Abolins e Ugis Cabulis. "Effect of different concentration of rapeseed oil and recycled poly (ethylene terephthalate) in polyols for rigid polyurethane foams". Journal of Cellular Plastics 54, n.º 2 (23 de setembro de 2016): 161–77. http://dx.doi.org/10.1177/0021955x16670585.
Texto completo da fonteGaponov, Sergey, e Natalya Terekhova. "The Combined Influence Of Heat And Mass Transfer Through A Porous Wall On The Boundary Layer Stability Compressible Gas At High Mach Numbers". Siberian Journal of Physics 10, n.º 3 (1 de outubro de 2015): 31–40. http://dx.doi.org/10.54362/1818-7919-2015-10-3-31-40.
Texto completo da fonteZhao, Yutang, Xiaohui Zhang, Xinting Tong, Xiaolv Yu, Jing Luo, Yanxiong Fu e Hua Wang. "The motion and wake characteristics of bottom blowing coaxial double bubbles". Thermal Science, n.º 00 (2024): 92. http://dx.doi.org/10.2298/tsci231208092z.
Texto completo da fonteTachimura, Takashi, Kanji Nohara, Koichi Satoh e Takeshi Wada. "Evaluation of Fatigability of the Levator Veli Palatini Muscle during Continuous Blowing Using Power Spectra Analysis". Cleft Palate-Craniofacial Journal 41, n.º 3 (maio de 2004): 320–26. http://dx.doi.org/10.1597/02-038.1.
Texto completo da fonteXu, Guojie, Bei Zhou, Jian Guo, Jun Zeng, Rongguang Zhang, Nian Cai, Yongxing Li et al. "Research on the Mechanism of Multi-Domain Coupling Centrifugal Electrostatic Blowing Flying Deposition". Micromachines 13, n.º 9 (24 de agosto de 2022): 1378. http://dx.doi.org/10.3390/mi13091378.
Texto completo da fonteWang, Wentao, Hui Zhang, Yangyong Dai, Hanxue Hou e Haizhou Dong. "Effects of low poly(vinyl alcohol) content on properties of biodegradable blowing films based on two modified starches". Journal of Thermoplastic Composite Materials 30, n.º 7 (28 de outubro de 2015): 1017–30. http://dx.doi.org/10.1177/0892705715614080.
Texto completo da fonteZhou, Jie Min, Qiang Gao, Liu Liu, Fang Kan Liu e Hong Jie Yan. "Fluid-Flow Characteristics and Critical Phenomenon in a Bottom Blowing Bath". Advanced Materials Research 402 (novembro de 2011): 365–70. http://dx.doi.org/10.4028/www.scientific.net/amr.402.365.
Texto completo da fonteNAKAJIMA, Keiji, e Morio KAWASAKI. "Promotion of Inclusion Float-out in Continuous Casting Tundish Bath by Gas Blowing". Tetsu-to-Hagane 73, n.º 7 (1987): 860–67. http://dx.doi.org/10.2355/tetsutohagane1955.73.7_860.
Texto completo da fonteZhuang, Xupin, Kaifei Jia, Bowen Cheng, Xi Feng, Shaojun Shi e Bo Zhang. "Solution blowing of continuous carbon nanofiber yarn and its electrochemical performance for supercapacitors". Chemical Engineering Journal 237 (fevereiro de 2014): 308–11. http://dx.doi.org/10.1016/j.cej.2013.10.038.
Texto completo da fontevan der Knoop, W., W. H. L. Moonen, J. Post e G. van Unen. "Nitrogen control in liquid steel for slab casting". Revue de Métallurgie 92, n.º 4 (abril de 1995): 503–10. http://dx.doi.org/10.1051/metal/199592040503.
Texto completo da fonteXie, Zhipeng, Zeyong Hu, Lianglei Gu, Genhou Sun, Yizhen Du e Xiaoqiang Yan. "Meteorological Forcing Datasets for Blowing Snow Modeling on the Tibetan Plateau: Evaluation and Intercomparison". Journal of Hydrometeorology 18, n.º 10 (1 de outubro de 2017): 2761–80. http://dx.doi.org/10.1175/jhm-d-17-0075.1.
Texto completo da fonteWu, C. H., Y. Li, Y.-D. Liu, X. Xie, G. R. Wu e M. Zhang. "Numerical simulation and application of argon blowing from tundish cover for bloom continuous casting". Journal of Mining and Metallurgy, Section B: Metallurgy, n.º 00 (2023): 27. http://dx.doi.org/10.2298/jmmb221027027w.
Texto completo da fonteEdwige, Stéphie, Philippe Gilotte e Iraj Mortazavi. "Computational Analysis of Actuation Techniques Impact on the Flow Control around the Ahmed Body". Fluids 7, n.º 2 (24 de janeiro de 2022): 52. http://dx.doi.org/10.3390/fluids7020052.
Texto completo da fonteОпрышко, Б. А., В. А. Швецов, А. Э. Шагинян e О. А. Белавина. "Improved design of the head of a blowing production well". Vodosnabzhenie i sanitarnaia tehnika, n.º 4 (15 de abril de 2021): 11–14. http://dx.doi.org/10.35776/vst.2021.04.02.
Texto completo da fonteYang, Xing Di. "Study on Refining Technology for Reducing the Content of T[O] in Steel". Advanced Materials Research 418-420 (dezembro de 2011): 419–23. http://dx.doi.org/10.4028/www.scientific.net/amr.418-420.419.
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