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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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Simulation and Experiments on the Capillary Force between a Circular Disk and a Parallel Substrate
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作者 王乐锋 黄本松 +2 位作者 何元哲 荣伟彬 孙立宁 《Chinese Physics Letters》 SCIE CAS CSCD 2017年第5期92-95,共4页
The capillary force of a liquid bridge with a pinned contact line between a small disk and a parallel plate is investigated by simulation and experiments. The numerical minimization simulation method is utilized to ca... The capillary force of a liquid bridge with a pinned contact line between a small disk and a parallel plate is investigated by simulation and experiments. The numerical minimization simulation method is utilized to calculate the capillary force. The results show excellent agreement with the Young-Laplace equation method. An experimental setup is built to measure the capillary force. The experimental results indicate that the simulation results agree well with the measured forces at large separation distances, while some deviation may occur due to the transition from the advancing contact angle to the receding one at small distances. It is also found that the measured rupture distance is slightly larger than the simulation value due to the effect of the viscous interaction inside the liquid bridge. 展开更多
关键词 Simulation and Experiments on the Capillary Force between a Circular Disk and a parallel Substrate
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MODELLING OF A NEW TYPE MR DAMPER 被引量:2
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作者 DongLonglei YanGuirong +1 位作者 KangJianbing DuYanting 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2004年第3期466-471,共6页
Applying the rule of laminar flow in the gap between two parallel disks, thetheoretical model of a new type MR damper is established, the damping characteristic and structuralcharacteristic of the MR damper are analyz... Applying the rule of laminar flow in the gap between two parallel disks, thetheoretical model of a new type MR damper is established, the damping characteristic and structuralcharacteristic of the MR damper are analyzed. Experimental results show that the model can reflectthe fundamental characteristics of the disk-gap MR damper. 展开更多
关键词 parallel disks Magnetorheological (MR) damper Quasi-static model
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Strip-oriented asynchronous prefetching for parallel disk systems
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作者 Yang LIU Jian-zhong HUANG +2 位作者 Xiao-dong SHI Qiang CAO Chang-sheng XIE 《Journal of Zhejiang University-Science C(Computers and Electronics)》 SCIE EI 2012年第11期799-815,共17页
Sequential prefetching schemes are widely employed in storage servers to mask disk latency and improve system throughput. However, existing schemes cannot benefit parallel disk systems as expected due to the fact that... Sequential prefetching schemes are widely employed in storage servers to mask disk latency and improve system throughput. However, existing schemes cannot benefit parallel disk systems as expected due to the fact that they ignore the distinct internal characteristics of the parallel disk system, in particular, data striping. Moreover, their aggressive prefetching pattern suffers from premature evictions and prolonged request latencies. In this paper, we propose a strip-oriented asynchronous prefetching (SoAP) technique, which is dedicated to the parallel disk system. It settles the above-mentioned problems by providing multiple novel features, e.g., enhanced prediction accuracy, adaptive prefetching strength, physical data layout awareness, and timely prefetching. To validate SoAP, we implement a prototype by modifying the software redundant arrays of inexpensive disks (RAID) under Linux. Experimental results demonstrate that SoAP can consistently offer improved average response time and throughput to the parallel disk system under non-random workloads compared with STEP, SP, ASP, and Linux-like SEQPs. 展开更多
关键词 parallel disk system STRIP Sequential prefetching Asynchronous scheduling
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