The combined effect of uplift and denudation upon the temperature gradient can be obtained by formula ( 3.86 ). 抬升和剥蚀对温度梯度(TG)的联合效应可以根据公式(3.86)进行估定。
The effect of temperature gradient on measurement are corrected based on1 D stress wave and heat conduct theories. 应力应变曲线,并利用一维应力波传播理论和传热学原理,修正了温度梯度(TG)场对测量的影响。
The influence of temperature gradient on the elastic deformation and rigid body motion and geometric nonlinear effect due to the large deformation are investigated. 对温度、弹性变形和刚体运动变量联合求解,研究了热流引起的温度梯度(TG)对弹性变形和刚体转动的影响,以及在大变形情况下的几何非线性效应。
The phase mismatch caused by nonlinear crystal temperature gradient is the key factor that affects on transfer efficiency. 在腔内倍频激光器中,非线性晶体的温度梯度(TG)造成的相位失配是影响谐波转化效率的关键。
Driving force of diamond crystal growth using seed method is from temperature gradient formed in the chamber. 籽晶方法生长金刚石采用温度梯度(TG)技术,金刚石晶体生长驱动力来源于腔体内构造的温度梯度(TG)。