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1)  energy consumption
能耗量<能>
2)  energy dissipation,energy loss
能量损耗<能>
3)  energy consumption
能量消耗
1.
Based on plenty of experiment data and theoretic research,we have found that in mechanical processing,the total energy consumption depends on the way that the work-piece and the machine tool matches up each other,when we take up different ways in processing the same or various work-pieces.
实际加工中,特别是流水线加工中,由于零件种类和机床数目很多,机床规格也不同,零件与机床的组合情况及能量消耗情况较为复杂。
2.
It carries out a series of experimental study by using the experimental method of engineering hydro- dynamics on the engineering practices such as pressure of air within system, regulation and control method of ?ow change, energy consumption of ventilator, designing method of equality flow field formed in the working phase of detecting platform system, and conforms the desi.
用工程流体力学实验的方法,对系统内气体压力、流量变化的调节控制方法、通风机的能量消耗,以及在检测平台系统工作段形成均匀流动流场的设计方法等工程实际问题,进行了一系列的试验研究。
3.
Analyzes technically the energy consumption at the terminal of central air conditioners and then puts forward the control method of energy consumption.
简要介绍了中央空调的结构原理及在大、中型医院使用现状,并从技术角度对中央空调末端的能量消耗情况进行了分析,进而提出了能量消耗的控制办法。
4)  energy consumption
能量耗散
1.
The thermodynamics theory and the principle of least energy consumption were applied to studying the energy consumption and damage evolution of short-fibre composites under repeated low velocity impact.
运用热力学理论和最小耗能原理,研究了反复低速冲击下短纤维复合材料的能量耗散与损伤演变,给出了冲击循环下材料耗散能表达式,建立了与复合材料割线模量降低率相关的损伤变量表达式和损伤演变方程。
2.
According to the fractal theory,a fractal model for consuming energy on rock fragmentation is provided through energy consumption analysis of rock fragmentation in rotary drilling.
通过旋转钻井中破碎岩石的能耗分析,应用分形岩石力学理论,从钻井过程中钻头破碎岩屑的粒度分布、能量耗散等角度,建立旋转钻井中钻头破碎岩石所需能量的分形描述模型,详细分析影响钻头破碎岩石能耗的因素。
5)  total energy consumption
能耗总量
6)  energy consumption
能量损耗
1.
Analysis of energy consumption in blank holding of single-action deep-drawing hydraulic press;
单动拉深液压机压边能量损耗分析
2.
By analysing hydraulic system of motorized wheel dump truck, the model of energy consumption is set up.
通过对电动轮自卸车液压系统的分析,建立系统能量损耗模型,并进行计算仿真,可以得出这种系统的能量损耗主要是单向阀的泄漏损失,单向阀的泄漏流量是影响能量损耗的主要参数,而与蓄能器的容积无关,并且得出系统保压时间为60秒。
3.
Analyzed the minimum theory and the theories of DC electric power drag system ,the mathematics model of the energy consumption is built, the optimization answer of controls parameter used by armature electric current is resolved according to the minimum theory, and the feasibility of the minimum energy consumption is analyzed .
在分析了极小值原理和直流电力拖动系统的基础上 ,建立了与能量损耗有关的数学模型 ,利用极小值原理解出了以电枢电流为控制量的最优解 ,并对最小能量损耗控制的可行性进行了分
补充资料:储能模量
分子式:
CAS号:

性质:复数模量的实数部分,表示黏弹性材料在形变过程中由于弹性形变而储存的能量。

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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