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温度曲线

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The major works are as follows: 1 The 3-D numerical model of U-sharp flow passages is set up. The single-phase fluid flow and heat transfer are simulated for the U-sharp smooth and rib-roughened flow passages with FLUENT software. Their performance curves, temperature field and velocity vector are obtained and the local heat transfer and flow pressure-drop distribution along flow passage are analyzed. It is revealed that the ribbed flow passages can enhance heat-transfer and make the temperature more uniform, but it increases the pressure-drop to more extent. 2 The influences of diaphragm depth, channel width and board spacing on the performance are investigated.

建立了层叠式蒸发器U形流道的3维湍流模型,用FLUENT软件对尺寸相同的U形光滑流道和肋化流道中单相流体的传热和流动进行了数值模拟,得到了两种流道的传热和阻力性能关系曲线及速度矢量图、温度场,分析了光滑流道和肋化流道的局部换热系数及沿程压降变化,结果表明流道的肋化能有效的增强传热,而且使流体的流动和传热更加均匀,但也较大地增大了阻力。

It is shown by the test results that the parasitic conduction current changes with the temperature rising,and the precision of TSC is affected seriously.

然而测试中存在着随温度升高而逐渐变化的寄生电导电流,其叠加于TSC曲线,会对TSC测试精

43 The gas deviation factor can be estimated from well-known correlation charts, using reservoir temperature, pressure, and the molecular composition of the gas.

答案:天然气偏差因子可以采用该天然气压力,温度及其组成,通过典型曲线进行估算。

For resistors operated in ambient over 70℃, power rating shall be derated in accordance with the above figure.

当电阻使用环境温度超过70℃时,其额定功率按上述曲线下降。

S waveform non-repetitive current pulse, per Fig.1 and derated above Ta=25℃ pe r Fig.

注释 : NOTES:1。脉冲电流时间10 / 1000μs 如图1 所示,温度25℃以上降额曲线见图2。

The paper introduces briefly to adjust and control some parameters,such as surface dopant concertration to attain necessary...

简单介绍通过调整和控制表面杂质浓度等参数,得到所需的灵敏度温度漂移曲线。

We found that the microstructures and magnetic properties were not influenced with depositing temperature and sputtering power. The magnetic properties were only affected by Fe layer thickness. When the Fe layer thickness is thinner than 5 nm, weak exchange coupling raised between Fe cap layer and FePt recording layer. When the thickness reached 10 nm, the strongest exchange coupling formed. Film coercivity didn't distinctly vary as Fe layer thickness is thinner than 15 nm. Consequently, we measured DCD curves and had the same conclusions. Indeed, the appearance of exchange coupling is confirmed with 10 nm Fe cap layer.

我们并发现溅镀Fe之温度与瓦数,并不会对结构或是磁性质有显著的影响,Fe厚度的改变虽然也不会改变结构,但是对Cr/Pt/FePt/Fe磁性质却有明显的变化,当Fe厚度薄时(3、5 nm),在Fe和FePt界面仅有弱的交换耦合力产生,Fe厚度是10 nm时,此时交换耦合力为最强,厚度再增加到15、20 nm时,Hc反而略为上升,同样的我们量测DCD曲线,也证实了Fe厚度10 nm的确有交换耦合力存在。

The Relationship of Peak Temperatures of DTG, DTA and DSC Curves in a First-Order Reaction

篇名 Ⅰ级反应DTG,DTA与DSC曲线峰顶温度关系的研究

It is demonstrated that the air temperature, ground temperature and their annual ranges in the Tibetan Plateau are highly correlated with corresponding latitude, longitude and elevation.

应用曲线拟合方法将所得统计分析系数拟合成时间函数,就可将高原地区的气温和地面温度表示成统一的空间坐标和时间的函数。

Based on this relationship, we can change the Tg of starch by changing its molecular weight to meet the pratical needs.The DSC technique is used to estimate the consistence character of starch with different additives. The glass transition behavious of starch blended with water and Xanthan gum are examined respectively. An expirical expression is obtained for the Tg of starch blendee with additives according to the blending model of polymers and verified with the experimental results. This expression can be used as a base to predict the Tg of starch blended with Xanthan gum.

采用DSC曲线分析法进行了各种填加剂与淀粉的相容性试验,考察了淀粉分别与水和黄原胶共混后体系的玻璃化转变行为,并根据高分子聚合物的共混模型对糯米淀粉与黄原胶共混物的玻璃化转变进行拟合,得到适用于此体系的经验关联式,并应用玉米等淀粉与黄原胶共混后的实验值进行验证,得到该关联式的有效性,为预测淀粉与黄原胶共混后的玻璃化温度值提供了理论依据。

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