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On the MHD squeeze flow between two parallel disks with suction or injection via HAM and HPM 被引量:2
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作者 D. D. GANJI M. ABBASI +2 位作者 J. RAHIMI M. GHOLAMI I. RAHIMIPETROUDI 《Frontiers of Mechanical Engineering》 SCIE CSCD 2014年第3期270-280,共11页
An analysis has been performed to study the problem of magneto-hydrodynamic (MHD) squeeze flow of an electrically conducting fluid between two infinite, parallel disks. The analytical methods called Homotopy Analysi... An analysis has been performed to study the problem of magneto-hydrodynamic (MHD) squeeze flow of an electrically conducting fluid between two infinite, parallel disks. The analytical methods called Homotopy Analysis Method (HAM) and Homotopy Perturbation Method (HPM) have been used to solve nonlinear differential equations. It has been attempted to show the capabilities and wide-range applications of the proposed methods in comparison with a type of numerical analysis as Boundary Value Problem (BVP) in solving this problem. Also, the velocity fields have been computed and shown graphically for various values of physical parameters. The objective of the present work is to investigate the effect of squeeze Reynolds number, Hartmann number and the suction/injection parameter on the velocity field. Furthermore, the results reveal that HAM and HPM are very effective and convenient. 展开更多
关键词 Homotopy Analysis Method Homotopy Perturbation Method incompressible flow magneto-hydrodynamic flow parallel disks
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STUDY ON DRILLING CHARACTERISTICS AND MECHANICAL PROPERTIES OF CFRP COMPOSITES 被引量:2
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作者 Seung-Chul Lee Seong-Taek Jeong +2 位作者 Jong-Nam Park Sun-Jin Kim Gyu-Jae Cho 《Acta Mechanica Solida Sinica》 SCIE EI 2008年第4期364-368,共5页
Stacking plates of CFRP composite materials are increasingly used because of their unique characteristics. However, unlike other materials used in metallurgy they have a disadvantage of uneven quality and anisotropy w... Stacking plates of CFRP composite materials are increasingly used because of their unique characteristics. However, unlike other materials used in metallurgy they have a disadvantage of uneven quality and anisotropy when combined with other composites. Hence, specimens of CFRP stacking plates are manufactured by changing orientation angles throughout three quasiisotropic plies (0°/45°/90°/-45°)68, (03°/453°/903°/-453°)2s, and (06°/456°/906°/-456°)s and throughout three cross plies (0°/90°/0°/90°)68, (03 °/903 °/03°/903°)2s, and (06 °/906 °/06°/906°)8 In this study 3-point bending tests and transverse bending tests have been carried out in order to find out mechanical characteristics according to orientation angles by stacking in 6 different types along with the change of stacking composition method of a CFRP composite. 展开更多
关键词 composite materials stacking plates
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Analysis and Design of Different Methods to Reach Optimum Power in Butler Matrix
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作者 Shahideh Kiehbadroudinezhad Jean-Francois Bousquet +2 位作者 Michael Cada Adib Shahabi Mohammad Ali Kiehbadroudinezhad 《International Journal of Communications, Network and System Sciences》 2019年第2期19-35,共17页
With the increasing demand for high speed reliable communications, smart antennas, such as the Butler Matrix array, can be used to develop a system that increases the performance of a wireless system. The Butler matri... With the increasing demand for high speed reliable communications, smart antennas, such as the Butler Matrix array, can be used to develop a system that increases the performance of a wireless system. The Butler matrix is a switched beam array system which can produce orthogonal uniform beams. The main objective is to improve the efficiency of the power in a 90-degree bend. Also, the double-mitered bend is particularly interesting since it provides a substantially lower reflection coefficient and a lower value of S12 at a frequency of 2.4 GHz compared to an unmitered one. Therefore, this paper describes an optimum design using a double-mitered method with a 2 × 2 and a 4 × 4 Butler Matrix array, operating at 2.4 GHz which is used in wireless systems with an FR4 substrate. 展开更多
关键词 Butler Matrix Beam Forming Phase Shifter Micro Strip
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