[1] 赵立新,宋民航,蒋明虎,等.轴流式旋流分离器研究进展[J].化工机械,2014,41(1):20-25. [2] 聂涛. 轴流式液液旋流器内流场的数值模拟[D]. 东营:中国石油大学(华东),2008:47-51. [3] 俞接成,陈家庆,韩景. 轴向入口油水分离水力旋流器及其数值模拟[J]. 北京石油化工学院学报,2009,17(2):19-23. [4] GONG Guangcai,YANG Zhouzhou,ZHU Shaolin. Numerical investigation of the effect of helix angle and leaf margin on the flow pattern and the performance of the axial flow cyclone separator[J]. Applied Mathematical Modelling,2012,36(8):3916-3930. [5] 王云峰,刘仁桓,王金花,等. 2种锥段结构的轴流式旋流器内的流场模拟[J]. 流体机械,2013,41(6):22-26. [6] 宋民航,韩佳轩. 轴流式脱水型旋流器的流场分析与结构优化[J]. 石油矿场机械,2012,41(12):56-60. [7] 蒋明虎,陈世琢,李枫,等. 紧凑型轴流式除油旋流器模拟分析 与实验研究[J]. 油气田地面工程,2010,29(9):18-20. [8] 蒋明虎,宫磊磊,徐保蕊,等. 含气条件对井下油水分离旋流器性能影响的数值模拟[J]. 化工机械,2014,41(5):629-632. [9] 蒋明虎,李永山,徐保蕊,等. 轴流式脱气除砂三相旋流分离器操作参数优选[J]. 化工机械,2015,42(1):68-71. [10] 赵立新,代佳鑫,郭现臣. 叶片式水力旋流器操作参数优选[J]. 流体机械,2013,41(10):7-9. [11] 赵立新,宋民航,蒋明虎,等. 新型轴入式脱水型旋流器的入口结构模拟分析[J]. 石油机械,2013,41(1):68-71. [12] 史仕荧,吴应湘,许晶禹,等. 导流片型管道式分离器油水分离结构优化[C]//第十三届全国水动力学学术会议暨第二十六届全国水动力学研讨会,青岛,2014:1063-1067. [13] 黄龙,邓松圣,王斌,等. 新型轴流导叶式气液旋流器流场数值模拟[J]. 机床与液压,2015,43(1):164-167. [14] 杨磊,李宝军,胡平. 网格变体方法的工程应用与进展综述[C]//中国计算力学大会2014暨第三届钱令希计算力学奖颁奖大会,贵阳,2014. [15] BIANCOLINI Marco Evangelos. Mesh morphing accelerates design optimization[E/OL]. Rome,Italy,2010. http://www.ansys.com/staticassets/ANSYS/staticassets/resourcelibrary/article/AA-V4-I1-Mesh-Morphing-Accelerates-Design-Optimization.pdf. [16] JEMCOV Aleksandar,MARUSZEWSKI Joseph. Shape optimization based on downhill simplex optimizer and free-form deformation in general purpose CFD code[C]// 17th Annual Conference of CFD Society of Canada,Ottawa,Ontario,Canada,2009. [17] MURUGAN S,WOODS B K S,FRISWELL M I. Hierarchical modeling and optimization of camber morphing airfoil[J]. Aerospace Science and Technology,2015,42(2):31-38. [18] BIANCOLINI Marco Evangelos. Advanced mesh morphing for automotive applications using RBF Morph[C]//Automotive Simulation World Congress,Frankfurt am Main,Germany,2013. [19] RAIDL Günther R,WUTM Christian. Approximation with evolutionary optimized tensor product Bernstein Polynomials[A]. Karlsplatz 13,1040 Vienna,Austria,2003. [20] KOLDA Tamara G,LEWIS Robert Michael,TORCZON Virginia. Optimization by direct search:new perspectives on some classical and modern methods[J]. SIAM Review,2003,45(3):385-482. [21] ZASLAVSKI Alexander,POWELL M J D. The NEWUOA software for unconstrained optimization without derivatives[M]. US:Springer,2004:255-297. [22] MCKINNON K I M. Convergence of the Nelder-Mead simplex method to a nonstationary point[J]. SIAM J. Optimization,1998,9(1):148-158. [23] TORCZON Virginia. On the convergence of the multidirectional search algorithm [J]. SIAM J. Optimization,1991,1(1):123-145. [24] PRESS William H,TEUKOLSKY Saul A,VETTERLING William T. Numerical recipes:the art of scientific computing[M]. 3rd Ed. Cambridge,England:Cambridge University Press,2007. [25] ROSENBROCK H H. An automatic method for finding the greatest or least value of a function[J]. Computer Journal,1960,3(3):175-184. [26] 王仁芳,许秋儿,汪沁,等. 基于最小二乘网格的模型变形算法[J]. 计算机辅助设计与图形学学报,2010,22(5):777-783. [27] ELSAYED Khairy. Design of a novel gas cyclone vortex finder using the adjoint method[J]. Separation and Purification Technology,2015,142:274-284. [28] OLSONT T J,VAN OMMEN R. Optimizing hydrocyclone design using advanced CFD model[J]. Minerals Engineering,2004,17(5):713-720. [29] 袁惠新,李双双,付双成,等. 三相分离旋流器内流场及分离性能的研究[J]. 流体机械,2015,43(1):28-32. [30] 盛庆娇. 新型螺旋入口水力旋流器模拟分析及实验研究[D]. 大庆:东北石油大学,2012:39-45. |