1) Spin-orbital structure
自旋-轨道结构
3) orbit-spin
轨道自旋
1.
A simple method to determine the coupling vectors of orbit-spin angular momentums
一种确定电子轨道自旋角动量耦合基矢的简便方法
4) track structure
轨道结构
1.
Specifications on railway track structure for speed-raising of the existing railway line;
铁路既有线提速对轨道结构的要求
2.
The authors hope that this paper can provide a test support for future track structure design.
在地铁运营期间,通过对采用浮置板、弹性支承块及弹性扣件轨道的轨道结构和隧道壁的振动测试,在时域和频域内,分析了不同地铁轨道结构的减振效果,为今后地铁轨道结构设计选型提供试验依据。
5) railway track structure
轨道结构
1.
Research on design of reducing vibration and decreasing noise non-ballast railway track structure;
减振降噪型无碴轨道结构设计的研究
2.
Secondly, in the case of periodic railway track structure, the general dynamical response in frequency domai.
为研究列车振动在地表的传播规律,推导了轨道结构在移动荷载作用下动力响应的解析解形式。
3.
Based on the analysis to the characteristic of urban mass transit and the ballast & non ballast railway track structure,this paper puts forward that the non ballast railway track structure should be adopted firstly in the urban mass transit,and the design & usage of reducing vibration & decreasing noise railway track structure are proposed and described in detail.
本文根据城市轨道交通的特点 ,通过分析有碴轨道与无碴轨道结构的特点 ,提出在城市轨道交通中 ,应优先采用无碴轨道结构类型及其设计原则。
6) rail structure
轨道结构
1.
Starting from an analysis of the noise resource of urban rail transit and its mechanism, this paper introduces a block diagram of reducing noise and vibration, and holds that measures of reducing noise and vibration be presented in rail structure in the early stage.
从城市轨道交通噪声源和产生机理入手,介绍了城市轨道交通减振降噪网络图,提出了轨道结构方面减振降噪的措施。
2.
After an analysis of the characteristics of urban mass transit based on Shanghai Pearl Line, the author argues that the selection of rail structure shall meet the fundamental requirements of the elevated urban mass transit, such as adopting 60 kg/m rail, Continuous Welded Rail, new - type WJ - 2 Rail Fastening as well as concrete support with concrete block structure, etc.
通过对城市轨道交通运营特征的分析,以上海市轨道交通明珠线为例,提出了高架线轨道结构的基本要求及相适应的型式:采用60kg/m钢轨、无缝线路、新型WJ-2型扣件,轨下基础采用支承块式承轨台结构。
补充资料:自旋-自旋弛豫
自旋-自旋弛豫
磁共振成像术语。又称T2弛豫或横向弛豫(transverse relaxation),指垂直于外磁场B0方向的磁化矢量的指数性衰减过程。磁共振成像时,对置于外磁场B0中的自旋系统施加90°射频脉冲,则自旋系统被激励,其净磁化矢量指向与外磁场B0垂直;射频脉冲终止后,被激励的质子与邻近的原子核之间发生相互作用,逐渐失去相位,净磁化矢量指向恢复与外磁场平行,该过程称自旋-自旋弛豫。自旋-自旋弛豫过程无能量交换。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条