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1)  lateral width
横向宽度
2)  Transverse coherence length
横向相干宽度
3)  Horizontal Degree
横向向度
4)  transverse stiffness
横向刚度
1.
Finite element analysis of transverse stiffness and strength of rubber parts for type SS9 locomotive′s axle-box pull-rod;
SS9型机车轴箱拉杆横向刚度及其橡胶件强度有限元分析
2.
Static finite element analysis of transverse stiffness of air spring used in a car;
汽车用空气弹簧横向刚度的静态有限元分析
3.
In the test and evaluation investigation of Baotou Huanghe River Bridge on Baotou-Shenmu Railway,it was found that the transverse stiffness of the Bridge could not meet the requirements in the codes and specifications,and it was determined that the Bridge must be strengthened and the strengthening design of the Bridge would be mainly based on the transverse natural vibration frequency.
包神铁路包头黄河大桥检定研究中,其横向刚度不能满足规范要求,必须进行加固。
5)  transverse temperature
横向温度
1.
Research method and measure analysis of transverse temperature in hot rolling strip;
热轧带钢横向温度研究方法及测量分析
2.
In order to obtain the tolerance requirement for the magnetic field homogeneity of the solenoids in electron cooling device, the source of the magnetic imperfection and its influence on the transverse temperature of electron beam were investigated by means of numerical simulation, and taking the space charge effect of electron beam into account.
分析了直螺线管磁场缺陷的来源 ,考虑了电子束的空间电荷作用 ,采用数值方法模拟计算了磁场缺陷对电子束横向温度的影响 ,获得了电子冷却装置中直螺线管磁场的均匀性要求 。
6)  lateral rigidity
横向刚度
1.
Study of the lateral rigidity calculation for secondarysuspension with rubber side bearing on electric locomotive;
电力机车二系橡胶堆旁承横向刚度计算方法的研究
2.
This paper describes the weaker lateral rigidity of the portal crane.
本文介绍该门式起重机横向刚度较弱的问题 ,可供类似临时结构参考。
3.
The calculation results of free vibration characteristics,lateral rigidity,the Sperling and Dickeeman comfortable standards are presented about Banqi-2 flat curved continuous rigid frame bridge of Nanning-Kunming Railway.
介绍了南昆铁路板其二号PC平弯连续刚构大桥的自振特性、横向刚度、舒适度斯佩林指数及狄克曼指数计算结果 ,并结合全桥的动静载试验 ,评价了本桥的力学和使用性能 ,证明这种新结构能满足正常使用要求 。
补充资料:相干散射和非相干散射
      再辐射的光量子频率和被吸收的光量子频率准确相等的散射过程称为相干散射。在相干散射的情况下,源函数准确地等于平均辐射强度。再辐射的光量子频率和被吸收的光量子频率不相等的散射过程称为非相干散射。在天体物理中,存在一系列因素使散射过程成为非相干散射。主要的因素是:原子的能级有一定的宽度、原子的热运动和湍动以及压力效应等。对于非相干散射,源函数是相当复杂的。
  

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