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Chinese translation for "microscopic model"

微模型

Related Translations:
microscopic roughness:  微观粗糙度
microscopic crystals:  显微结晶
microscopic cracking:  微观裂缝
microscopic section:  显微镜磨片显微镜切片显微切片组织切片
microscopic spectrophotometry:  显微分光光度法
microscopic magnification:  显微镜放大
microscopic view:  微观
microscopic hole:  微孔
microscopic measurement:  测微法显微测量
microscopic observation:  微观观察显微观察
Example Sentences:
1.One are the microscopic models , namely the kinetic models based on semiconductor boltzmann equation
一类是微观模型,即以半导体玻尔兹曼方程为基础的动力学模型。
2.Since the development of computer science and need of traffic simulation , the focus is transferred to microscopic models
现在,由于高速运算计算机的发展以及交通仿真的需要,研究热点逐渐转移到微观仿真模型。
3.These models are classified to submicroscopic model , microscopic model , mesoscopic model and macroscopic model according to the level of detail
如按细节层次分,交通仿真模型可分为亚微观模型、微观模型、中观模型和宏观模型。
4.Microscopic model calculates position , speed and acceleration of every vehicle in net at each moment . it can offer great deal of information to traffic management and simulation
微观交通模型在每一时刻均计算每一辆车的位置、车速、加速度等特性,可为交通管理和仿真提供详细的信息。
5.Because the microscopic model needs the distinct structure relation , the numerous input data and the long time of computing , the macroscopic model was used . after analyzing methods for the nodal pressure , the corresponding optimal program was drawn up
由于微观模型要求拓朴结构关系清楚,所需输入数据多,计算耗时长,所以根据实际情况建立了管网的宏观模型,针对宏观模型的特点,分析了测压点数目和位置的确定方法,进而编制了计算机优化程序。
6.Tow types of fuel - cell models can be distinguished : microscopic and macroscopic . this paper adopt agglomerate microscopic model to analyze the fuel cell ' s performance . according to the computation , it can be concluded that the performances are determined by the thickness of the electrode , the effective ionic conductivity , the radius of agglomerate and other parameters
对燃料电池单体,建立了微观的数学模型? ?聚块模型,用nenmanbandj方法计算熔融碳酸盐燃料电池阳极和阴极的过电位,分析了各种参数的影响,对电极的制备,提高单电池的性能,有一定的指导意义。
7.Presents the investigation of the heat conduction behavior , internal thermal stress field of specimen under thermal shock and microscopic damage and failure of the tungsten based composites by combination of macroscopic and microscopic analyses and integration of material science and mechanics ; describes a microscopic mechanical model based on the microstructure of components with macroscopic stress applied to the microscopic model as that of maximum principal stress at the center , and the fringe of the specimen , and the microscopic stress fields obtained through calculation by the finite element method , and concludes from test results that the maximum principal stress is first generated inside the test coupon , , and a failure will be first initiated in the inclusion if the material fails at this time ; the maximum principal stress moves to the edge of the test coupon after the test coupon is heated for a period of time , and the failure will first be initiated in the base if the material fails at this time
从材料设计的思想出发,采用宏观与微观、材料科学与力学相结合的方法,对钨基复合材料的热传导行为、材料在热冲击载荷下的内部热应力场及材料细观结构的破坏行为进行了详细的理论研究.根据钨基复合材料的细观组织结构建立了材料细观模型.在宏观分析的基础上,分析了材料微结构内部的破坏行为.分别取试件心部与边缘主应力值最大点的应力状态,施加在所建立的模型上,用有限元方法计算了模型内部的弹性应力场.结果表明:试件主应力最大值首先产生在试件内部,此时,如果材料发生破坏将先从夹杂中开始;加热一段时间后试件中的最大主应力值转移到试件边缘,此时材料发生破坏将先从基体中开始
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