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裤形法撕破强力与翼形法撕破强力测试结果的比较 被引量:4
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作者 刘桂凤 张勇 翟海群 《中国纤检》 2012年第2期54-55,共2页
为了了解织物撕破强力测试方法裤形法(GB/T3917.2—2009)与翼形法(GB/T3917.5—2009)测试结果之间的差异,本文选择几种不同类型的机织物进行对比测试分析,结果表明,两种方法撕裂原理相似,影响因素不同,其结果相互之间具有良好的线性相... 为了了解织物撕破强力测试方法裤形法(GB/T3917.2—2009)与翼形法(GB/T3917.5—2009)测试结果之间的差异,本文选择几种不同类型的机织物进行对比测试分析,结果表明,两种方法撕裂原理相似,影响因素不同,其结果相互之间具有良好的线性相关性。 展开更多
关键词 机织物 撕破强力 裤形 翼形法
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翼形法在船舶机桨不匹配处理中的应用 被引量:1
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作者 吴飞 吴国妹 《江苏船舶》 2014年第1期42-43,共2页
针对5万DWT级散货船机桨不匹配的情况,在主机及相关设备不变的情况下,采用翼形法对螺旋桨进行修边操作,解决了主机超负荷的问题,航速在可承受范围内略有下降。
关键词 翼形法 机桨匹配 船用柴油机 船用螺旋桨 功率匹配
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An Airfoil Parameterization Method for the Representation and Optimization of Wind Turbine Special Airfoil 被引量:6
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作者 LIU Yixiong YANG Ce SONG Xiancheng 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第2期99-108,共10页
A new airfoil shape parameterization method is developed, which extended the Bezier curve to the generalized form with adjustable shape parameters. The local control parameters at airfoil leading and trailing edge reg... A new airfoil shape parameterization method is developed, which extended the Bezier curve to the generalized form with adjustable shape parameters. The local control parameters at airfoil leading and trailing edge regions are enhanced, where have significant effect on the aerodynamic performance of wind turbine. The results show this improved parameterization method has advantages in the fitting characteristics of geometry shape and aero- dynamic performance comparing with other three common airfoil parameterization methods. The new paramete- rization method is then applied to airfoil shape optimization for wind turbine using Genetic Algorithm (GA), and the wind turbine special airfoil, DU93-W-210, is optimized to achieve the favorable C1/Cd at specified flow con- ditions. The aerodynamic characteristic of the optimum airfoil is obtained by solving the RANS equations in computational fluid dynamics (CFD) method, and the optimization convergence curves show that the new para- meterization method has good convergence rate in less number of generations comparing with other methods. It is concluded that the new method not only has well controllability and completeness in airfoil shape representation and provides more flexibility in expressing the airfoil geometry shape, but also is capable to find efficient and op- timal wind turbine airfoil. Additionally, it is shown that a suitable parameterization method is helpful for improv- ing the convergence rate of the optimization algorithm. 展开更多
关键词 wind turbine AIRFOIL parameterization method optimization
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