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Z字形折叠无人机气动优化设计
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作者 孟宾 张锦康 +2 位作者 奚乐乐 杨泽夏 周宁 《河北科技大学学报》 CAS 北大核心 2023年第5期450-458,共9页
针对Z字形无人机存在滚转力矩和偏航力矩的问题,提出一种基于混合翼型参数化的整机多目标优化方法,以非支配排序遗传算法(NSGA-Ⅱ)为核心与混合翼型参数化、SCDM流场建模、Fluent Meshing网格划分以及Fluent Solution流场计算相结合,建... 针对Z字形无人机存在滚转力矩和偏航力矩的问题,提出一种基于混合翼型参数化的整机多目标优化方法,以非支配排序遗传算法(NSGA-Ⅱ)为核心与混合翼型参数化、SCDM流场建模、Fluent Meshing网格划分以及Fluent Solution流场计算相结合,建立优化模型,进而开发出基于Isight平台的整机自动优化流程,实现Z字形无人机的气动优化设计。结果表明,基于混合翼型参数化的优化平台,增加了翼型优化的搜索空间,实现了多目标预定数值的优化,减小了Z字形无人机的滚转力矩和偏航力矩,提高了其整体的气动性能。所提方法能消除有限翼展无人机的力矩,为解决不对称无人机滚转和偏航问题提供了技术参考。 展开更多
关键词 定翼机 无人机 优化设计 遗传算法 翼型参数化 流场建模 空气动力学性能
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Modeling a magneto-rheological soft starter for use with belt conveyors 被引量:2
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作者 Tian Zuzhi Hou Youfu 《International Journal of Mining Science and Technology》 SCIE EI 2012年第3期385-389,共5页
The theory of magnetic circuit design, the constitutive equations of a magneto-theological fluid, and the load properties of belt conveyors were used to design a magneto-rheological soft starter test-bed. The magnetic... The theory of magnetic circuit design, the constitutive equations of a magneto-theological fluid, and the load properties of belt conveyors were used to design a magneto-rheological soft starter test-bed. The magnetic field distribution in the working gap was analyzed and the current-speed relationship was investigated. A mathematical model for the time response was deduced. The results show that a linear relationship between current and magnetic field is seen when the magnetic materials are not saturated and the magnetic field is uniform in the working section. The rotation speed of the driven shaft changes linearly with increasing time. The response is rapid and can be as short as milliseconds. This meets the starting requirements of belt conveyors. 展开更多
关键词 Magneto-theological softer starterBelt conveyorsControl modelTime response
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Experimental and CFD Study on the Role of Fluid Flow Pattern on Membrane Permeate Flux 被引量:7
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作者 A. Parvareh M. Rahimi +1 位作者 S. S. Madaeni A. A. Alsairafi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2011年第1期18-25,共8页
This paper reports a study on the role of fluid flow pattern and dynamic pressure on the permeate flux through a micro filtration membrane in laboratory scale.For this purpose,a dead-end membrane cell equipped with a ... This paper reports a study on the role of fluid flow pattern and dynamic pressure on the permeate flux through a micro filtration membrane in laboratory scale.For this purpose,a dead-end membrane cell equipped with a marine type impeller was used.The impeller was set to rotate in the clockwise and counter clockwise directions with the same angular velocities in order to illustrate the effect of rotation direction on permeate flux.Consequently, permeate fluxes were measured at various impeller rotational speeds.The computational fluid dynamics(CFD)predicted dynamic pressure was related to the fluxes obtained in the experiments.Using the CFD modeling,it is proven that the change in dynamic pressure upon the membrane surface has direct effect on the permeate flux. 展开更多
关键词 MEMBRANE MICROFILTRATION computational fluid dynamics modeling permeate flux
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