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geometry parameters中文是什么意思

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  • 2 ) the inductance transducer used to identify large wear particle is developed . the analytical theory of wear particle and detection windings are expatiated and inner magnetic distribution of inductance transducer is discussed , the geometry parameters are optimized by using genetic algorithm , and the finite element analysis method is used in the designing
    2 )研制了识别大磨损颗粒的材质和测定其粒度的电感传感器,阐述了磨损颗粒与检测线圈的解析关系,探讨了传感器的理论基础,分析了电感式检测传感器内部的磁场分布,并应用遗传算法优化了传感器几何参数,最后进行了有限元仿真分析。
  • The paper analyzed the struture of the tri - eccentric butterfly vavle at length , defined the tri - eccentric butterfly valve , educed the geometry function and its characteristic about the section of the butterfly disc . the results indicate : the parallel contour line across butterfly disc thickness is normal ellipse , thereby eslablished function relations between its geometry parameters ( long axis and short axis ) of three primary sections of the butterfly disc and the tri - eccentricity ; in order to avoid interference between the butterfly disc and the valve seat as well as the valve body , combining the torque , we obtained the feasible range about the rotation center of the tri - eccentric butterfly vavle
    本文主要分析了三偏心蝶阀的结构,给出了三偏心的定义,推导出了蝶板截面的几何方程及其性质,结果表明,沿蝶板厚度的平行截面轮廓线为标准的椭圆形,进而推导出了蝶板几个主要截面的几何参数(长轴、短轴)与三个偏心之间的函数关系;考虑到蝶板启闭过程中避免与阀体及阀座发生干涉,结合蝶板的启闭扭矩,确立了三偏心蝶阀回转中心的适宜区域。
  • ( 3 ) comparison of finite element results with experimental results shows that the finite element model can simulate the joints fairy well . then effects of geometry parameters on the ultimate capacity of joints are discussed and the available ranges of these parameters are obtained . ( 4 ) formula for calculating the ultimate strength of k - joints with cfst is proposed
    并详细讨论了各项几何参数对k型方钢管混凝土节点的极限承载力的影响情况,给出了几何参数的取值范围; ( 4 )提出了k型方钢管混凝土节点的极限承载力实用计算公式,并与j
  • For recent years , in view of the effects of deposition reduction of river dredging and key technology in the lower yellow - river , a series of key tasks on special topics have been carried out by many researchers . and a series of research results have been obtained . this paper will combine with research results mentioned above to analyze as well as emphasizal analyze results by means of physics model " test , and demonstrate the effect of dredging channel " geometry parameter on deposition reduction of river dredging and mechanism of deposition reduction of river dredging
    为此,近年来,许多研究人员针对黄河下游挖河的减淤作用及其关键技术开展了一系列专题攻关,进行系统研究及分析论证,并取得一系列研究成果,本论文结合此课题,重点通过物理模型试验对挖河几何参数对挖河减淤效果的影响以及挖河减淤机理方面进行重点分析论证。
  • Through the excel program , and combining the inside and outside environment of the excavation and stress field and displace field , the data of stress and displacement of points are analyzed in variable depth and load grade and terminal state . the spss software has been applied to the statistics of geometry parameter of failure surface , and the failure surface criterion is created by the linearity regression from d ( the longest horizontal distance between the failure surface and the side face of the slope ) , ho ( the depth
    此外,应用spss软件对试验破坏滑弧的几何参数进行统计分析,并对滑弧的最大水平深入距离d及d处至坑底的高度h _ 0结合各水理指标进行多元线性回归,建立滑面的判据,并对此判据进行修正,且用实际工程对其进行评价,通过反算已知滑面的c 、值,表明边界条件对破坏形式有极大的干扰作用,所直接看到的破坏类型土体不是发生整体滑移破坏,而是剥落式的溃屈破坏。
  • In microfluidics systems , many parameters influence on the flow moving and control , for examples , microchannel surface characters , section shape . in this paper the main work is the research on the mechanism forming electroosmoticflow , theory analysis and simulation on the influence of the geometry parameters on the microflow . this paper reviews the development history of dc electroosmotic micropump and introduces the principle of electric double layer and dc electroosmotic micropump
    在微流控系统中微通道的表面特性、截面形状等都会对电渗流流体的流动和控制产生影响,因此本文的主要工作内容就是对电渗流的产生机理进行研究和对微通道的几何参数对其中的流体的流动状况的影响进行分析。
  • Patterns which are based on experience and experiment and wasteful in time , nonguarantecable in quality . high production efficiently is then achieved . and the same time , this paper puts forward a relative control system , changes and realizes the adjustment of spinning speed and the fixed increasing the technology and application of stone balls , yielding better economic efficienly . in the end of this paper , there is an appendix of computation program edited by c language , the geometry parameters of stone balls
    同时通过恒定总流的能量方程和动量矩方程,确定了风水球转速的计算方法,建立了相应的控制系统,改变了过去风水球转速、转向固定不变的状况,实现了对转速转向的调节,设计了转向控制系统和转速控制系统,提高了风水球的技术含量和可观赏性,从而获得更好的经济效益。
  • By the geometry parameters analysis , it was pointed that the distance between the outside annular and the most outside annular should be required to ensure the structure ' s stiffness ; with the increase of height h between the inside annular and outside curve equation , the stiffness would be enhanced ; when the h became very big , the structure presented the linear character , so the structure was n ' t easy to yield ; the sizes of long axis and short axis had the important influence to the structure ' s nonlinear performances and with the increase of span ; the structure presented the strong nonlinear character , contrarily the structure presented the linear character
    对结构几何参数分析表明,外圈与最外圈距离r的尺度应有一定要求,以保证结构的刚度;随着内圈与外圈曲线方程高差h的增大,刚度会得到提高;当内外高差较大时,结构呈现出线性特性,因此结构不易发生屈曲现象;外椭圆长短轴的尺度对结构非线性性能的影响十分敏感,随着跨度的增加,结构表现出强非线性特征,反之结构呈现线性特征。
  • Then a laplace equation can be deduced and through computation , the blade profile coordinates and geometry of the cascade result from an analytical solution . next , an optimization method , taking the geometry parameters of the unclosed profile as its objective functions , is used to obtain an optimized blade profile . and last , the optimized profile is refined with round arcs added in the leading and trailing edges
    本文采用的势、流函数解析法法中,将无旋方程用新的类无旋方程替代,这样在计算域上得出速度场的解析关系式,计算得出初始叶型;然后以此初始叶型的几何参数,例如前尾缘的封闭程度和叶型弯角等为目标函数,通过优化程序对初始速度进行自动调节直到目标函数值最小为止。
  • Principals of how to ensure geometry parameter of space grids finite element model are given and f90 program to calculate member force and chord section is developed according < < space grid design and construction code > > ( sgdc code ) so as to determine the real constant ansys needed . to create finite element model of psgs , program to create node , element number and restriction information is compiled also
    给出了确定网架有限元模型几何参数应遵循的一般原则,并依据《网架结构设计与施工规程》中网架内力计算算法编制了计算周边简支条件下正放四角锥网架内力和杆件截面f90程序,从而确定采用ansys进行网架计算所需的单元实常数。
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