41 resultados para Gresset, 1709-1777.

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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利用有限元计算软件ABAQUS,分别采用非线性弹性模型、多孔弹性模型、Ramberg-Osgood弹塑性模型对管土系统进行有限元计算.构建了有限单元模型,并对接触面、约束方程进行了说明,分析了管道的沉降量、侧向阻力系数与管重间的关系,计算结果与有关的试验结果相吻合,具有可比性,表明对管土相互作用进行数值模拟是可行的.并得到了管道侧向失稳的判别准则,可为今后进一步的试验研究提供参考意见.

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In this paper a thermodynamic constitutive model is developed for stress induced phase transformation in single crystalline and polycrystalline shape memory alloys (SMAs). Volume fractions of different martensite variants are chosen as internal variables to describe the evolution of microstructure state in the material. This model is then used in prediction the transformation behavior of a SMA (Cu-Al-Zn-Mn) under complex thermomechanical load (including complete and incomplete transformation in mechanical cycling, and proportional/non-proportional loading). (C) 2002 Elsevier Science Ltd. All rights reserved.

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A method was devised to evaluate the adhesion between a film and a substrate. A front-end coated bullet is accelerated by a gas gun and hits the substrate of the specimen under test. The impact generates a compressive stress pulse that propagates toward the film. After transmission through the interface, part of the pulse is reflected on the free surface of the film, and tensile stress arises at the film-substrate interface, possibly inducing debonding of the film. This dynamic process was demonstrated analytically and simulated numerically by the finite element method. The results validate the initial concept and lay the foundation for further optimization of this method.

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本项研究工作是在“种子植物的起源和早期演化”的题目下由六个主要的研究部分构成 基本上是根据产自中国的化石所提供的形态学上的证据来探讨与现代植物类群之间的关系。 1)早二迭世山西组松柏类及相关类群的研究 2)山西省上石千峰组晚二迭世种子植物的研究 3)煤核植物科达类在演化上的意义 4)晚泥盆世植物Polypetalophyton wufengensis的研究 5)种子植物起源和早期演化的化石证据的研究 6)早泥盆世似种子植物的研究。

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研究化石果实和种子的古果实学在欧洲和北美开展较早,近年来发展迅速,我国在这个领域的研究相对薄弱,迄今为止尚没有专项的研究工作。本论文首次对我国云南和山西晚第三纪的果实和种子进行专门研究,并根据它们对应的现存最近亲缘植物的分布及生态特征分析和重建了当时当地的吉植被、古环境和古气候。 1.云南省西部陇川盆地芒旦地区早一中中新世被子植物果实和种子植物群,包括果实和种子29种,详细研究了14种,隶属于ll科12属:壳斗科的石栎属、金缕梅科的蜡瓣花属、金丝桃科的金丝桃属、樟科的木姜子属、木兰科的木兰属和鹅掌楸属、桑科的榕属、杨梅科的杨梅属、蓝果树科的蓝果树属、芸香科的花椒属、清风藤科的清风藤属以及山矾科的山矾属。所有这些果实和种子的化石在中国均为首次报道,其中蜡瓣花属、鹅掌楸属、蓝果树属、清风藤属和山矾属还是该属在中国的首次大化石记录。在植物群组成中,石栎属占绝对优势,其他主要类群有蜡瓣花属、木姜子属、木兰属、花椒属和山矾属等。芒旦果实和种子植物群反映当时当地为亚热带常绿阔叶林的森林面貌和温暖湿润的亚热带气候条件。 2.山西省榆社盆地张村地区晚上新世( 2.3 Ma-3.5 Ma)水生植物川蔓藻属(Ruppia)果实和种子的大量发现及其与川蔓藻属2个化石种和5个现代种的比较表明,这些果实和种子属于一个新种—榆社川蔓藻Ruppia yushensis sp. nov。该新种的主要特征为内果皮卵形、表面光滑、侧面具两个显著的窄椭圆形凹陷、顶端具一个明显的小尖突,以及种子顶端具显著的球形膨大的种脐。榆社川蔓藻将川蔓藻属的第三纪地理分布范围从欧洲延伸到了东亚,并且填补了它在上新世地层的空缺。榆社川蔓藻作为榆社盆地晚新生代水生植物的发现,指示了当时当地的咸水环境。根据川蔓藻属植物的现代生态资料并结合其它矿物学和生物学指标,可以推测晚上新世张村地区为一个浅而平静的微咸水湖。榆社川蔓藻果实和种子的大量出现说明该植物可能在该水域形成了单一的优势类群,其光滑的内果皮表面指示当时当地为暖温带或温带气候。

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生物对外界环境中化学物质信号的识别和感知对其生存有着极其重要的意义.大多数哺乳动物具有两条嗅觉通路,主要嗅觉系统(MOS)用来感受普通嗅觉信号,而犁鼻器系统(VNS)则从异常灵敏的程度来识别小范围内特异性的化学感应信号-信息素(pheromone).信息素是一类在同种内个体间传递的物质,可引发群体内与个体交流和生殖相关的一系列生理和行为变化.本文综述了对哺乳动物犁鼻器信息素感知及犁鼻器系统特异(VNS-specific)基因的分子进化研究进展,这些基因包括信息素受体家族V1R和V2R以及离子通道TRPC2,为进一步深入研究哺乳动物信息素感知的分子机制奠定基础。

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述结构式(I)化合物盐肤木内酯A(Rhuscholide A),其制备方法,其在制备抗艾滋病药物中的应用和在制备抑制合胞体形成药物中的应用。

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The in-plane optical anisotropy of three groups of GaAs/AlGaAs quantum well structures has been studied by reflectance-difference spectroscopy (RDS). For GaAs/Al0.36Ga0.64As single QW structures, it is found that the optical anisotropy increases quickly as the well width is decreased. For an Al0.02Ga0.98As/AlAs multiple QW with a well width of 20nm, the optical anisotropy is observed not only for the transitions between ground states but also for those between the excited states with transition index n up to 5. An increase of the anisotropy with the transition energy, or equivalently the transition index n, is clearly observed. The detailed analysis shows that the observed anisotropy arises from the interface asymmetry of QWs, which is introduced by atomic segregation or anisotropic interface roughness formed during the growth of the structures. More, when the 1 ML InAs is inserted at one interface of GaAs/AlGaAs QW, the optical anisotropy of the QW can be increased by a factor of 8 due to the enhanced asymmetry of the QW. These results demonstrate clearly that the RDS is a sensitive and powerful tool for the characterization of semiconductor interfaces.