97 resultados para 143-865


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扩展裂纹顶端弹塑性应力应变场分析是近年来断裂力学发展的重要课题。本文对弹性不可压缩的理想塑性材料中定常扩展裂纹顶端塑性区内的应力应变场进行了系统的数学分析,讨论了速度场和应力场的高阶渐近方程和解的形式,证实高阶渐近场依赖于塑性区和卸载弹性区交界线Γ_B的曲线方程。一旦Γ_3的曲线方程确定下来,高阶渐近场的解答就能确定下来。

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本文在磁雷诺数Rm=(VL/V_m)(?)1和磁作用参数N(?)1的情况下,讨论了连续磁场对可压导电介质在管道电极与绝缘体连接端面区高超声速流动的影响问题。用复变函数理论求解拉普拉斯方程,得出电流密度和洛伦茨力的解析式,并从计算中,找到了产生环电流的足够条件。导出高超声速流的扰动方程,得出扰动参量的积分公式,并对扰动方程进行数值解,揭示出与不可压介质相似的流动特性,并讨论了在各特殊点附近的流动特性。

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本文讨论了太阳活动区和黑子区的无力场的演化。文章分析了无力因子随时间变化的运动学含义,讨论了太阳耀斑具体的储能过程,给出了静力学无力场讨论太阳耀斑储能过程的局限性。最后,又提出了一种子午流场的储能过程。将这些“磁能的储存过程”与“适当的不稳定性导致的爆发过程”相结合起来讨论,就有可能来研究太北北阳耀斑的许多特征。

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This paper describes a new technology for solonchak soil reclamation in which surface flood irrigation of fresh water and pumped wells drainage of salty groundwater are combined. The comprehensive investigation of water and salt movement has been conducted through field test, laboratory simulation and numerical calculation. The dependence of desalination on irrigation water quantity, drainage quantity, leaching time and other parameters is obtained based on the field tests. The entire desalination process under the flood-irrigation and well-drainage operations was experimentally simulated in a vertical soil column. The water and salt movement has been numerically analysed for both the field and laboratory conditions. The present work indicates that this new technology can greatly improve the effects of desalination.

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Wall pressure fluctuations and surface heat transfer signals have been measured in the hypersonic turbulent boundary layer over a number of compression-corner models. The distributions of the separation shock oscillation frequencies and periods have been calculated using a conditional sampling algorithm. In all cases the oscillation frequency distributions are of broad band, but the most probable frequencies are low. The VITA method is used for deducing large scale disturbances at the wall in the incoming boundary layer and the separated flow region. The results at present showed the existence of coherent structures in the two regions. The zero-cross frequencies of the large scale structures in the two regions are of the same order as that of the separation shock oscillation. The average amplitude of the large scale structures in the separated region is much higher than that in the incoming boundary layer. The length scale of the separation shock motion region is found to increase with the disturbance strength. The results show that the shock oscillation is of inherent nature in the shock wave/turbulent boundary layer interaction with separation. The shock oscillation is considered to be the consequence of the coherent structures in the separated region.

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应用超声波探测抽油杆疲劳裂纹扩展时的深度a, 通过室内实验找出D级抽油杆裂纹深度a和裂纹宽度c之间的比趋向于0.78, 简化后可直接研究超声波信号V和裂纹深度a之间的关系, 从而用V-a关系估算有疲劳裂纹D级抽油杆的剩余寿命, 避免杆断带来的经济损失.

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开展了不同重力情况下燃料电池性能的实验研究.利用微重力落塔,对常重力和微重力条件下燃料电池发电时其内部的两相流动开展了可视化现场观测.对重力因素对燃料电池内部传质过程的影响进行了分析和讨论.实验结果表明:当电流密度较大时,在微重力环境中燃料电池性能较常重力环境中的有较明显下降.由于微重力条件下浮升力的消失导致气体不能及时从流道中排出,进而对直接甲醇燃料电池内的传质过程产生负面影响.

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为探索将高精度CFD分析引入高超声速飞行器气动外形优化设计的可行性,以6°飞行攻角、6马赫飞行速度下的最大升阻比为目标,引入CFD分析计算气动性能,使用Nelder-Mead可变多面体搜索方法对高超声速弧形翼导弹进行了气动外形优化.计算结果表明,在满足弹翼安全性的条件下,优化外形比初始外形的升阻比有明显提高(约9.22%),同时阻力系数、弹翼展长和弹翼面积均有不同程度的降低.计算结果充分证明了优化设计的有效性和采用CFD分析的必要性.依据该文结果提出一种前掠弧形翼高超声速导弹气动布局方案.

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分析了滑移线延长线与楔面交点附近的流动特点,研究了准定常强激波反射中马赫杆的变形,建立了马赫杆突出变形消失的过渡准则,并用激波极曲线方法进行了求解.对马赫杆的变形过程进行了描述,研究了比热比、马赫数的变化对马赫杆突出变形消失条件的影响,并对突出变形消失区域与终点双马赫反射区域进行了比较.结果表明:马赫杆突出变形的消失是低比热比介质中出现的一种激波反射现象.马赫杆突出变形的消失,导致出现一种新的无射流、直马赫杆的双马赫反射结构.

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Researches on two-phase flow and pool boiling heat transfer in microgravity, which included groundbased tests, flight experiments, and theoretical analyses, were conducted in the National Microgravity Laboratory/CAS. A semi-theoretical Weber number model was proposed to predict the slug-to-annular flow transition of two-phase gas–liquid flows in microgravity, while the influence of the initial bubble size on the bubble-to-slug flow transition was investigated numerically using the Monte Carlo method. Two-phase flow pattern maps in microgravity were obtained in the experiments both aboard the Russian space station Mir and aboard IL-76 reduced gravity airplane. Mini-scale modeling was also used to simulate the behavior of microgravity two-phase flow on the ground. Pressure drops of two-phase flow in microgravity were also measured experimentally and correlated successfully based on its characteristics. Two space experiments on pool boiling phenomena in microgravity were performed aboard the Chinese recoverable satellites. Steady pool boiling of R113 on a thin wire with a temperature-controlled heating method was studied aboard RS-22, while quasi-steady pool boiling of FC-72 on a plate was studied aboard SJ-8. Ground-based experiments were also performed both in normal gravity and in short-term microgravity in the drop tower Beijing. Only slight enhancement of heat transfer was observed in the wire case, while enhancement in low heat flux and deterioration in high heat flux were observed in the plate case. Lateral motions of vapor bubbles were observed before their departure in microgravity. The relationship between bubble behavior and heat transfer on plate was analyzed. A semi-theoretical model was also proposed for predicting the bubble departure diameter during pool boiling on wires. The results obtained here are intended to become a powerful aid for further investigation in the present discipline and development of two-phase systems for space applications.

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对南海钙质砂进行了三轴实验研究, 重点针对不同胶结情况下的力学性质,如不同胶结材料和含量的变化对强度和应力应变特性的影响等.研究表明,钙质砂具有与陆源砂不同的性质,它的内摩擦角高达48°,远大于一般陆源砂的35°左右;在低围压下钙质砂表现出剪胀性,但随围压增加剪胀性降低;利用硅酸盐水泥作为胶结材料效果较好;随着水泥含量的增加,钙质砂试样的强度增加.

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We demonstrate theoretically that the negatively chirped femtosecond laser pulse can be spectrally narrowed by cross-phase modulation. The new view is well Supported by numerical simulation. The negative chirp method in fibers might be useful in all optical wavelength switching applications. (c) 2005 Elsevier B.V. All rights reserved.

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提出了一种基于人工神经网络的全光纤化大量程实时距离干涉测量仪.采用双正弦相位调制方法,即通过同时调制半导体激光器的波长和干涉仪的光程差实现外差测量。为了扩大干涉仪的测量范围和消除输出信号中的交叉敏感,采用人工神经网络进行信号处理,把两路经过初步解调的干涉信号作为输入样本,物体距离的实际值作为输出样本,对神经网络进行训练,以使其具有良好的推广能力.实验结果表明神经网络的使用不仅扩大了距离的测量范围而且提高了测量精度.

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