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1)  mechanism of kinetic energy loss
动能损失机理
2)  kinetic energy loss
动能损失
1.
By using nonlinear finite element analysis code ANSYS/DYNA to build a dynamic analysis model of the round-link,the paper analyzes the kinetic energy loss of the round-link chain under the different initial conditions and the energy absorption under chain blocked,according to the dynamic process of the round-link chain under chain blocked condition.
同时,对不同初始条件下的圆环链动能损失以及卡链过程中圆环链的能量吸收特性进行了分析。
2.
By using nonlinear finite element analysis code ANSYS/DYNA,build a dynamic analysis model of the round-link,analyzes the kinetic energy loss of the round-link chain under the different initial condition and the energy absorption under chain blocked,according to the dynamic process of the round-link chain under chain blocked condition.
同时,对不同初始条件下的圆环链动能损失以及制动过程中链环的能量吸收特性进行了分析。
3)  loss mechanism
损失机理
1.
According to China\'s national conditions,the paper proposes that the important facts of the feeding amount,the grain moisture content,and the ratio of straw to grain,which affect the grain random loss rate change,shall be considered to study the grain moving process and grain loss mechanism.
同时,分析了它们各自的内涵、特点和不足,并根据我国的国情,探讨和展望了应结合联合收获机喂入量、谷物含水率、草谷比等影响谷物随机损失率变化的重要因素,进行谷物运移过程和籽粒损失机理的研究,从而有效监控随机损失率,充分发挥联合收获机的功效。
4)  kinetic energy loss rate
动能损失率
1.
To reflect the kinetic energy loss intensity in a compound channel, two new concepts, transverse kinetic energy correction coefficient (TKECC) and kinetic energy loss rate (KELR) are put forward for steady, mean and turbulent flow.
为了反映动能损失的强度,针对恒定、均匀、紊动水流,提出了横向动能校正系数和动能损失率的概念。
5)  kinetic energy loss caused by braking
制动动能损失
1.
Based on train movement transfer formulation between energy and work,this paper explores the main forms of energy consumption,which include work of resistance and kinetic energy loss caused by braking.
基于对运行阻力功和制动动能损失的考虑,从理论分析及仿真计算的角度,探讨了调速制动前的惰行距离和途中运行速度均衡性对列车运行能耗的影响。
6)  theory of energy loss
能量损失原理
补充资料:比释动能


比释动能
kinetic energy released in material; kerma

bishi由叩neng比释动能(kineticene卿rele胎ed in Irlaterial;ke~)剂量学量之一。1958年,w.c.勒施提出单位质t所释放的动能的概念,称为kerm(kinetiee”e咬万回eaa司卿画t~),反映不带电粒子辐射与物质相互作用中的能t传递。后又采用比释动能ke~(七杨。ene耳妙花1以曰妇inm川e‘目),符号为K。比释动能的定义为dE。除以dm所得的商,即 K== dE,/dm式中dE。为不带电粒子在质量为dm的物质中所释放的所有带电粒子的初始动能之和。sI单位为凡一‘(焦耳每千克),专用单位为仰(戈〔瑞」)。适当选择物质中的比释动能,可以方便地描述不带电粒子的辐射场,例如空气比释动能、组织比释动能等。 (吕维纯徐涌)
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