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1)  over collision
超碰撞
1.
The north south trending tensional fault zone in the basin was the most active tectonic belt during the plate over collision.
盆地南北向张性断裂带是板块超碰撞期活动最强烈的构造带。
2)  ultralow collision
超冷碰撞
3)  hypervelocity impact
超高速碰撞
1.
Visible spectral radiant intensity measuring technology for hypervelocity impact phenomena;
超高速碰撞可见光谱辐射强度测量技术
2.
Simulation of hypervelocity impact to honeycomb sandwich;
蜂窝夹芯板超高速碰撞仿真
3.
Applications of the smoothed particle hydrodynamics method to hypervelocity impact simulations;
光滑粒子模拟方法在超高速碰撞现象中的应用
4)  hypervelocity impacts
超高速碰撞
1.
Numerical analysis of space debris hypervelocity impacts;
空间碎片超高速碰撞数值分析
2.
Numerical simulation of hypervelocity impacts of space debris using SPH method;
空间碎片超高速碰撞问题的SPH方法模拟
3.
The microwave radiation intensity measurement on hypervelocity impacts were conducted with the 8 mm microwave radiometer at the hypervelocity impact facility at HAI,CARDC.
针对超高速碰撞物理现象研究需要,为了确认超高速碰撞过程中的电磁辐射信号能作为超高速碰撞产生的可探测物理量之一,利用研制的8 mm微波辐射计在中国空气动力研究与发展中心FD-18A超高速碰撞靶开展了超高速碰撞过程中的微波辐射强度测量初步试验研究。
5)  hyperelastic collision
超弹性碰撞
1.
An analysis of the optimum conditions of the hyperelastic collision experiment;
超弹性碰撞实验最佳工作条件分析
2.
In this article,we have discussed several kinds of continuous hyperelastic collision process,which deepen our understanding by comparing with the elastic collision.
本文分析了几种超弹性碰撞多次连续碰撞的过程,以期对照弹性碰撞的进一步理解。
6)  hypervelocity oblique impact
超高速斜碰撞
1.
Considering the relations between the damage of space vehicle suffered in hypervelocity oblique impact and the configuration of the secondary debris cloud,Smoothed Particle Hydrodynamics(SPH) technique is applied to study the configuration of the debris cloud generated in a hypervelocity oblique impact.
针对航天器的碰撞毁伤程度与超高速斜碰撞所产生碎片云的形态的关系,利用光滑质点流体动力学(SPH)方法研究了超高速斜碰撞所产生碎片云的形态。
2.
Investigates the distribution characteristics of secondary debris clouds generated during a hypervelocity oblique impact.
研究超高速斜碰撞所形成的二次碎片云的分布特性。
补充资料:超超
1.谓超然出尘。 2.高高在上貌。 3.犹绰绰。 4.见"超超玄箸"。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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