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The results show that the intensity of magnetic field decreases with diameters and numbers of induction coil increasing.

结果表明:随着感应线圈直径的增大,最大磁场强度降低;随着锥度的增大,线圈中最大磁场强度降低;随着感应线圈匝数增加,线圈中的最大磁场强度增加。

It is indicated that the damping of the alloy is induced by phase interface slipping or grain boundary viscous sliding, the infinitesimal plastic deformation which is caused by the difference of elastic modules and heat expansion coefficients between phases of the alloy.

结果表明: ZA27-4%Si合金阻尼随频率增大而减小,随温度升高而增大,阻尼不随应变振幅的变化而变化; ZA27-4%Si合金室温阻尼为5.83×10-3,与ZA27合金阻尼相当; ZA27-4%Si合金的阻尼是由合金内部的晶界和相界面滑动、位错振动以及各相的热膨胀系数和弹性模量间差造成的微塑性变形共同造成的。

The conclusions can be drawn through numerical simulation: The hydrate-forming region becomes small with increasing circulation rate and inhibiter concentration, and it is possible to make the hydrate-forming region away from sea floor by increasing circulation rate and inhibiter concentration, thus preventing blowout preventer lines from hydrate plugging; the decrease in gas volume fraction in the annulus due to hydrate formation reduces pit gain, which can delay the detection of well kick; the possibility of hydrate presence at a relatively low gas production rate is much greater than that at a relatively higher production rate; the bottom hole pressure is affected little by hydrate phase transition, and it is allowable not to consider hydrate phase transition when the bottom hole pressure is calculated; shut-in casing pressure cann't truly reflect gas kick due to hydrate formation and the situation is getting worse with time

模拟计算结果表明:溢流期间,天然气水合物的生成区域会随着循环流量的增大或抑制剂浓度的提高而减小,可通过增大流量和抑制剂浓度使水合物的生成区域脱离海底,减小防喷器管线被堵塞的危险;水合物的生成使环空中气体体积分数降低,泥浆池增量减小,给溢流检测带来延迟;当检测到有气侵发生时,水合物藏分解速率比较小时,井筒中生成水合物的可能性要比分解速率大的情况下更为严重;水合物相变对井底压力的影响较小,在工程中计算井底压力时可以忽略;由于天然气水合物的生成使得关井套压值不能真实反应气侵情况,而且随着时间的增加情况会更加严重。

With the increment of the gas flux, void wave main instantaneous velocity increases.

随着气相流量的增大,空隙率波主要瞬时波速增大,瞬时波速概率分布产生波状推进。

The deformed metal-SWNTs and metal-TCNTs can be transformed to semiconductor or insulator due to deformations resulting to variation of the atomic structure and the nearest-atom transfer integral having relation with the directions.Based on the Boltzmann transport equation and n - electronic energy dispersion relations for individual SWNTs, the theoretical model caculating the current and conductance of the SWNTs is deduced. The low-temperature conductances of undoping or doping SWNTs are studied numerically, the calculated results show that, for the doping SWNTs, the conductance is quantized, i.e.

我们从Boltzmann方程出发,并结合SWNTs的能量色散关系,导出了计算手性SWNTs电导或电流的理论模型,并分别对非掺杂和掺杂SWNTs的低温电导或电流进行数值计算,结果表明:对于非掺杂的SWNTs,其电导是量子化的,即电导随偏压或电子输运能量变化呈跃变的台阶式结构,这些结构随管径增大或温度升高变得不明显;对于掺杂SWNTs,当偏压为某些特定值V_i时,传导电流有跃变,且传导电流的大小、跃变周期及跃变幅度等不是完全由掺杂后的电子浓度决定的,而与管半径R及掺杂后Fermi能级附近的电子态密度有直接关系,随着温度的升高和管径的增大,跃变结构趋于平滑。

It was intensively used in the field of portable computer and communications, if one doubles the specific capacity of the positive electrode, e.g., by using an oxide that could reversibly intercalate ILi instead of 0.5 Li per 3d-metal, one could increase the specific capacity of the cell by 68%.

如果正极的比容量增加一倍,即每个3d金属能嵌入1个理,那么电池的比容在量就能增加 68%;如果负极的比容量增大 1倍,那么电池的比容量只增大12%,所以对埋离于电池的研究主要应放在对正极材料的研究上,LIMn.O。由于电压高、价格便宜和对环境友好而成为最有希望的备选材料之一。

Under normal circumstance and with the existence of positive electrotonil,the action potential amplifude of ischium nerve frunk of normal toad increases as its wave width broadens, and decreases as the electrode distance shortens.

在情况正常及阳极电紧张存在时,正常蟾蜍的坐骨神经干的动作电位之幅值,随其波宽的增加而增大,随电极间距离的增大而减小;阳极电紧张的存在,降低了动作电位的幅度。

During the isothermal constant strain rate compression process, the effect of deformation heating on flow stress increases with increasing equivalent strain rate.

在等温恒应变速率压缩过程中,随着等效应变速率的增大,变形热效应对流动应力的影响程度增大

The results showed that with increasing the oil flow rates, both of skewness and kurtosis increased firstly, and then decreased.

研究发现随油相折算速度的增大,偏度系数和峰度系数均表现出了先增大,而后逐渐减小的变化规律。

Deformation greatly promoted carbonitride isothermal precipitation and made C-curve shift leftwards. The position and shape of C-curve depended on the content of Nb and N to a great extent, C-curve shifted leftwards a little when N content increased and its nose temperature was raised with Nb content increased. 3 when cooling rate increased, start temperature and finish temperature of continuous cooling precipitation decreased, full precipitation became difficult to take place, the volume fraction of carbonitride precipitation decreased, molar fraction of Nb and C dissolved in austenite increased, and the precipitation grain was further refined. Deformation shorten precipitation start time during continuous cooling, raised precipitation start temperature, accelerated precipitation kinetics of carbonitrides.

计算表明:1在Fe—Nb—C系统中,随着温度的降低,析出相的平衡体积分数增加,溶解在奥氏体中的Nb、C的摩尔分数降低,析出相中C和Nb的原子分数的比值v增加;2变形大大促进了碳氮化物的等温析出,使C曲线左移,Nb和N的含量与C曲线的位置和形状有一定的关系,N含量的增加,使C曲线略有左移,而Nb的含量的增加使得C曲线的鼻子区上移;3随着冷却速率的增大,连续冷却析出的开始温度和结束温度均有所降低,并且析出变得越来越不充分,析出相体积分数明显减小,溶解在奥氏体中Nb和C的摩尔分数增大,析出相粒子被明显细化,变形大大缩短了CCP过程碳氮化物析出的开始时间,提高了析出的开始温度,促进了析出动力学。

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The split between the two groups can hardly be papered over.

这两个团体间的分歧难以掩饰。

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