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理想流体的英文

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"理想流体"怎么读用"理想流体"造句

英文翻译手机手机版

  • frictionless fluid
  • ideal fluid
  • idealgas
  • perennial fluid
  • perfect fluid
  • perfect liquid

例句与用法

  • If applied experiential formula mechanically to calculate the dynamic moment of the tri - eccentric butterfly vavle , its errors for the results would be larger . the paper , by virtue of the postulate of flow with fixed constant , eddiless of ideal liquid , calculated laplace equation by finite difference method in rectangular coordinates , gained pressure distribution on the butterfly disc section , thereby figured out its dynamic moment under each opening angle and the method was feasible for calculating dynamic moment of symmetry or not , designed the program and described the curve of dynamic moment . finally , the paper infered their laws
    采用经验公式来计算三偏心蝶阀的动水力矩,误差比较大,本文根据三偏心蝶阀的结构特点,利用理想流体的定常、无旋流动的假定,用有限差分法在直角坐标系中求解拉普拉斯方程,得到蝶板截面上的压力分布,从而计算出蝶板在各个开度下的动水力矩,设计出了求解的程序,给出了程序运行的结果并进行了数据处理从而得到了动水力矩曲线,总结了它的变化规律。
  • The paper consider bone tissue as an biphasic porous medium , which is composed of solid bone matrix and liquids as extracellular fluid . on the other hand , bone tissue can produce electric potential when it is subjected to outside force . so dynamic governing equations can be established through combining the biphasic porous medium model and the streaming potential model , which describe the coupling between the distortion and fluid flow as well as the streaming potential
    论文首先考察了骨组织的生理形态结构及其组成,据此将骨组织模型化为一种由固体骨基质和由细胞外液和血液等组成的液体所构成的两相饱和多孔介质,并进一步假设固体骨质为各向同性弹性介质,而孔间流体为理想流体;另一方面,骨组织在受到应力作用变形后能够产生电位。
  • Based on biphasic porous medium model of articular cartilage , this thesis regards the solid phase as isotropic linear elastic medium , the fluid phase as ideal fluid , the deformation as small , and the permeability depending on the volume strain of solid phase , and deduce out the finite element method for this nonlinear model
    本文针对关节软骨两相多孔介质模型,视固体相为各向同性线弹性介质,流体相为理想流体,变形为小变形,渗透率与固体相体积应变相关,研究该非线性模型的有限元法。
  • Computational fluid dynamics ( cfd ) techniques are used to study and understand fluid behavior in tunnels . by simulating complex specific operational cases , we can educe velocity or flux distribution in tunnel under different ventilation and resistance situation and determine the favorable operational procedures of the erlang mountain tunnel ventilation in a fire case . comparison has been made between a simulation and experiment for some cases in order to prove the cfd model is powerful , so that enables the study of cases for which experimental data is not available
    采用本文将隧道内的气流看成是理想流体的一维恒定流动,通过对二郎山特长公路隧道半横向通风系统建立隧道内的空气动力学模型,利用计算机进行数值分析与计算,得出发生火灾时,不同通风阻力条件下隧道中的风速分布及流量分布,并通过实验室隧道模型实验进行验证与修正,依据研究结果给出了二郎山半横向通风隧道的火灾控制方案,从而解决了二郎山公路隧道通风对火灾的控制问题,同时为半横向通风公路隧道的火灾通风提供科学的方法。
  • Abstract : through the theoretical liquid dynamics complex study to the bridge pier and abutment circling flow , this paper related with bridge abutment maximum clear water equilibrium scouring experiment ? s analyses has made out the bridge abutment ? s velocity circulation , maximum flow capacity per unit width , and the maximum part scouring depth counting method
    文摘:对不可压缩理想流体桥台平面绕流复势研究,确定桥台绕流流速环量和桥台极限绕流流量,并结合清水极限平衡冲刷实验进行桥台最大局部冲刷深度的理论探讨
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