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1)  dissipation characteristic
耗散特性
1.
To illustrate an application of thermosensitive resistance in supervising instrument for transfusion device, it make use of the dissipation characteristic of NTC thermosensitive resistance.
介绍了利用 NTC热敏电阻的耗散特性而做的一例输液过程监控装置。
2)  characteristics of abrasion and stripping
磨耗和飞散特性
1.
Using raveling test and Cantanbro stripping test,influences of mix proportion of coarse aggregate,fine aggregate and binder as well as the different voids on characteristics of abrasion and stripping resistance of drainage asphalt mixtures were studied.
采用磨耗(raveling)试验和肯特堡(Cantanbro)飞散试验,考察了粗集料、细集料、结合料的不同配合比和排水沥青混合料的不同空隙率对排水沥青混合料磨耗和飞散特性的影响。
3)  characteristics of dissipative structure
耗散结构的特性
1.
The study on laws and characteristics of dissipative structure in urban traffic system is one of the key problems of urban traffic control.
本文指出城市道路交通系统为耗散结构系统,在城市各个交通分区具有局部交通状态极限和系统自治性;根据热动力学耗散结构的特性,研究城市道路交通系统的交通量聚集和扩散规律。
4)  toughness degradation
韧性耗散
1.
For three kinds of materials, a family of equivalent damage curve was measured on various stress levels using toughness degradation fatigue tests by fixing a group of cyclic numbers.
通过固定一组循环数进行不同应力水平加载试验 ,用韧性耗散法测得三种材料等效损伤线族 ,它显示了损伤场全貌。
5)  Viscous dissipation
粘性耗散
1.
Experimental investigation on the influence of viscous dissipation on liquid temperature rise in microtube;
粘性耗散对微管内部液体温升影响的实验研究
2.
Viscous dissipation cannot be neglected during such pumping because it causes the temperature of liquid to rise and its viscosity to decrease.
螺旋泵可用来输送高粘性液体,该过程中由于液体的温度升高而粘度降低,因而其粘性耗散不能忽略。
3.
The viscous dissipation effect on forced convection in a porous saturated circular tube with an isoflux wall is investigated on the basis of the Brinkman flow model.
基于Brinkman流动模型,研究了等通量壁多孔饱和圆管中粘性耗散对强迫对流的影响。
6)  viscous dissipation
黏性耗散
1.
Influence of viscous dissipation on convective heat transfer in quartz glass microtube;
黏性耗散效应对微石英管内部对流换热的影响
2.
Meshless analysis on heat transfer with viscous dissipation in polymer flow in tube;
圆管聚合物热流中黏性耗散分析的无网格模拟
3.
Many inessential factors are becoming more important,such as the viscous dissipation,axial conduction and surface wettability.
许多在常规尺度下不重要的因素如黏性耗散、轴向热传导和表面浸润性等都开始变的突出。
补充资料:010耗散
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性质:见010损失。

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