首页> 外国专利> ELIMENT DETECTING METHOD FOR MULTI-BLADE CENTRIFUGAL FAN AND MULTI-BLADE CENTRIFUGAL FAN MADE BY THE METHOD

ELIMENT DETECTING METHOD FOR MULTI-BLADE CENTRIFUGAL FAN AND MULTI-BLADE CENTRIFUGAL FAN MADE BY THE METHOD

机译:多叶片离心风机的元素检测方法及该方法制得的多叶片离心风机

摘要

The present invention relates to a ripening crop circle blower, and more particularly, the impeller (2), the blade ( 3) and the scroll (in the ripening crop circle blower comprising 4), the design parameters selected for step (S101) and the objective function configuration step (S102) and the design constraints set target setup step comprises a step (S103) (100) ; Grid generation step (S201) and the three-dimensional heat flow analysis step (S202) and the result DATA analysis step (S203) includes the step of designing the target analysis (S200); Analysis result verification step (S300); Reaction model coefficient determining step (S401) and the reaction modeling step (S402) comprises a regression analysis step (S400); Response model validation step (S500); Optimum point determining step of the reaction function (S601) and the optimal design variable determining step (S602) of wing elements comprising a blower crop circle optimal design step (S600) comprises a detection method and a ripening crop blower circle produced by the method (1) relates to, by performing a three-dimensional flow analysis crop circle passing through the inside of the wing blower (1) examine the effect of changes in the performance range of the impeller (2) and the design parameters of the scroll, and on the basis of the three-dimensional flow analysis and the optimal design, performance and efficiency to provide superior crop ripening blower one won.
机译:本发明涉及一种成熟的农作物循环风机,更具体地说,涉及叶轮(2),叶片(3)和涡旋件(在成熟的农作物循环风机中包括4个),为步骤(S101)选择的设计参数和目标函数设定步骤(S102)和设计约束条件设定目标设定步骤包括步骤(S103)(100);网格生成步骤(S201)和三维热流分析步骤(S202)以及结果数据分析步骤(S203)包括设计目标分析的步骤(S200);分析结果验证步骤(S300);反应模型系数确定步骤(S401)和反应模型步骤(S402)包括回归分析步骤(S400);响应模型验证步骤(S500);包括鼓风机麦田圈的反应函数的最佳点确定步骤(S601)和机翼元件的最佳设计变量确定步骤(S602)包括最佳设计步骤(S600),包括检测方法和通过该方法产生的成熟的麦田鼓风机圈( (1)涉及通过对流过机翼鼓风机(1)内部的麦田圈进行三维流动分析,检查叶轮(2)的性能范围和涡​​旋设计参数变化的影响,以及在三维流动分析和最佳设计,性能和效率的基础上,可提供出色的农作物成熟鼓风机一韩元。

著录项

  • 公开/公告号KR20060056738A

    专利类型

  • 公开/公告日2006-05-25

    原文格式PDF

  • 申请/专利权人 INHA-INDUSTRY PARTNERSHIP INSTITUTE;

    申请/专利号KR20040095926

  • 发明设计人 SEO SEOUNG JIN;KIM KWANG YONG;

    申请日2004-11-22

  • 分类号F04D27/00;F04D15/00;

  • 国家 KR

  • 入库时间 2022-08-21 21:25:39

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