22 resultados para XCModel, cad 3d 2d, computer graphic, 64 bit porting, migrazione, analisi statica, metodi formali, modellazione resa rendering

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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文章描述了中国科学院近代物理研究所(IMP)正在研制的IMP质子治癌装置3D剂量测量系统。该系统主要由2D剖面探测器、辐照深度和剂量探测器、射程调整器等组成。其中,多级双维位置灵敏平行板雪崩探测器(MPPAC)使用C3F8作为工作气体,工作气压为700Pa,阳极电压为+700V。对3组分α粒子测得位置分辨为0.54mm(FWHM)。

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全面对采用空间分集技术和时域Rake接收机分集的带限空间光通信系统的原理进行了模拟和分析,首次在空间激光通信领域提出了综合了分集接收和均衡技术的联合信道均衡器方法,通过计算机仿真分析,研究了不同空间分集方法在非相关空间光开关键控信号下的误比特率,在不同符号间干扰条件下采用rake接收时的误比特率,以及在不同信噪比和不同信道数时采用联合分集均衡的误码率。研究的结果确认联合分集均衡方法能够明显的提高空间光通信系统的性能。

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在室内养殖条件下,研究厚颌鲂仔鱼的摄食、耐饥饿和恢复生长能力。试验结果表明:(1)仔鱼在孵出后2~3d开口摄食,卵黄囊在之后的2d耗尽,饥饿仔鱼在12~13日龄达到不可逆点(PNR);(2)饥饿仔鱼的初次摄食率在卵黄囊耗尽时达到最高,保持在80%以上的时间为7d;(3)仔鱼在PNR后死亡率急剧增加,PNR后第3d仔鱼全部死亡;(4)经恢复生长试验,延迟3d投饵对仔鱼的存活率影响不大,延迟3~6d投饵对仔鱼全长生长影响不大。

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The growth interruption (GI) effect on GaSb quantum dot formation grown on GaAs by molecular beam epitaxy was investigated. The structure characterization was performed by reflection high-energy electron diffraction (RHEED), along with photoluminescence measurements. It is found that the GI can significantly change the surface morphology of GaSb QDs. During the GI, the QDs structures can be smoothed out and turned into a 2D-like structure. The time duration of the GI required for the 3D/2D transition depends on the growth time of the GaSb layer. It increases with the increase of the growth time. Our results are explained by a combined effect of the stress relaxation process and surface exchange reactions during the GI. (C) 2002 Elsevier Science B.V. All rights reserved.

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NUSH是NESSIE公布的17个候选分组密码之一.对不同分组长度和密钥规模的NUSH进行了线性密码分析,每一种攻击的复杂度δ由它所需的数据复杂度ε和处理复杂度η组成,记为δ=(ε,η).对于分组长度为64 bit的NUSH,当密钥为128 bit时,3种攻击的复杂度分别为(258,2124)、(260,278)和(262,255);当密钥为192 bit时,3种攻击的复杂度分别为(258,2157)、(260,296)和(262,258);当密钥为256 bit时,3种攻击的复杂度分别为(258,2125)、(260,278)和(262,253).对于分组长度为128 bit的NUSH,当密钥为128bit时,3种攻击的复杂度分别为(2122,295)、(2124,257)和(2126,252);当密钥为192 bit时,3种攻击的复杂度分别为(2122,2142)、(2124,275)和(2126,258);当密钥为256 bit时,3种攻击的复杂度分别为(2122,2168)、(1224,281)和(2126,264).对于分组长度为256 bit的NUSH,当密钥为128 bit时,两种攻击的复杂度分别为(2252,2122)和(2254,2119);当密钥为192 bit时,两种攻击的复杂度分别为(2252,2181)和(2254,2177);当密钥为256 bit时,两种攻击的复杂度分别为(2252,2240)和(2254,2219).这些结果显示NUSH对线性密码分析是不免疫的,而且密钥规模的增大不能保证安全性的提高.

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By using a transfer-matrix method on the basis of two-dimensional (2D) Bloch sums in accordance with a tight-binding scheme, a self-consistent calculation on the resonant tunneling in asymmetric double-barrier structures is presented, in which contributions to resonant tunneling from both three-dimensional (3D) electrons in the contacts and 2D electrons in the spacer or accumulation layers are considered simultaneously. The charge buildup effect on the current versus voltage (I-V) curves is evaluated systematically, showing quantitatively how it results in the I-V bistability and enhanced differences between I-V curves for positive and negative bias in an asymmetric double-barrier structure. Special attention is focused on the interaction between 3D-2D and 2D-2D resonant-tunneling processes, including the suppression of 2D-2D resonant tunneling by the charge buildup in the well accompanying the 3D-2D resonant tunneling. The effects of the emitter doping condition (doping concentration, spacer thickness) on the presence of two types of quasi-2D levels in the emitter accumulation layers, and on the formation of a potential bulge in the emitter region, are discussed in detail in relation to the tunneling process.

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被动陆缘陆坡深水区因蕴藏大量的油气及天然气水合物资源而受到石油行业的关注。峡谷水道作为重力流沉积物从陆缘向陆坡盆区搬运的主要通道,是现今海洋科学研究的热点,是“由源到汇”研究的重要内容。峡谷水道可以作为粗粒沉积物的最终沉积场所,已被钻探证实可作为良好的油气储集体。本文选择陆坡水道为研究目标具有科学和实际意义。 本文借助1979年至2007年采集的2D(部分)、3D地震数据,参考部分钻井资料,以层序地层分析为基础,以多种地球物理属性为手段,以南海北部深水陆坡区为研究区,进行层序地层分析,并对陆坡水道的发育进行研究。层序特征分析发现琼东南南部陆坡具有不同于北部陆坡的物源供给模式,断陷期以北部华南地块和西南方向中南半岛为主要物源,也有部分来自西沙隆起的物源;拗陷期西南方向的中南半岛为主要物源区。 通过大量2D地震资料研究,本文首次系统地研究了发育在南海北部陆坡的大型水道,该水道起源于莺歌海盆地东部、横跨琼东南盆地、西沙海槽,终结于南海西北次海盆西部,我们把该水道命名为“琼东南中央水道”。琼东南中央水道长约570km,宽4-8km不等,发育在上新统地层中,该水道的产生与中新世以来红河对莺歌海盆地充足的物源供给,中新世末的海平面下降以及5Ma左右红河断裂带的反转诱发的滑塌有关。 基于新采集的3D地震资料和地球物理技术,本文首次在琼东南盆地南部陆坡深水区识别出深水水道,该期水道发育在更新统地层中,形态各异,有类似曲流河的曲流水道,也有典型的低弯曲侧向迁移水道。振幅特征显示该期水道主要以弱振幅细粒泥质充填为主,部分位置有强振充填反射,可能为粗粒充填。根据地震剖面和相干时间切片时空分析,认为该水道主要有3期侵蚀和3期充填过程。从展布特征来看,该期水道的形成与更新世(中)末次盛冰期海平面的下降,地震诱发中南半岛中部小型山脉河流的复苏对南海西部的供给有关。

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The boundary knot method (BKM) of very recent origin is an inherently meshless, integration-free, boundary-type, radial basis function collocation technique for the numerical discretization of general partial differential equation systems. Unlike the method of fundamental solutions, the use of non-singular general solution in the BKM avoids the unnecessary requirement of constructing a controversial artificial boundary outside the physical domain. The purpose of this paper is to extend the BKM to solve 2D Helmholtz and convection-diffusion problems under rather complicated irregular geometry. The method is also first applied to 3D problems. Numerical experiments validate that the BKM can produce highly accurate solutions using a relatively small number of knots. For inhomogeneous cases, some inner knots are found necessary to guarantee accuracy and stability. The stability and convergence of the BKM are numerically illustrated and the completeness issue is also discussed.

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This paper provides a numerical approach on achieving the limit equilibrium method for 3D slope stability analysis proposed in the theoretical part of the previous paper. Some programming techniques are presented to ensure the maneuverability of the method. Three examples are introduced to illustrate the use of this method. The results are given in detail such as the local factor of safety and local potential sliding direction for a slope. As the method is an extension of 2D Janbu's generalized procedure of slices (GPS), the results obtained by GPS for the longitudinal sections of a slope are also given for comparison with the 3D results. A practical landslide in Yunyang, the Three Gorges, of China, is also analyzed by the present method. Moreover, the proposed method has the advantages and disadvantages of GPS. The problem frequently encountered in calculation process is still about the convergency, especially in analyzing the stability of a cutting corner. Some advice on discretization is given to ensure convergence when the present method is used. However, the problem about convergency still needs to be further explored based on the rigorous theoretical background.

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Photoluminescence spectroscopy has been used to investigate self-assembled InAs islands in InAlAs grown on InP(0 0 1) by molecular beam epitaxy, in correlation with transmission electron microscopy. The nominal deposition of 3.6 monolayers of InAs at 470 degrees C achieves the onset stage of coherent island formation. In addition to one strong emission around 0.74 eV, the sample displaces several emission peaks at 0.87, 0.92. 0.98, and 1.04 eV. Fully developed islands that coexist with semi-finished disk islands account for the multipeak emission. These results provide strong evidence of size quantization effects in InAs islands. (C) 1999 Elsevier Science B.V. All rights reserved.

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A fascinating 3D polycatenane-like metal-organic framework with two kinds of helical chains was reported, in which the helical chains exhibit multiple interweaving modes based on the unusual 2D -> 2D parallel -> 3D parallel interpenetration.

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In this paper the finite element method was used to simulate micro-scale indentation process. The several standard indenters were simulated with 3D finite element model. The emphasis of this paper was the differences between 2D axisymmetric cone model and

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Czochralski (Cz) technique, which is used for growing single crystals, has dominated the production of single crystals for electronic applications. The Cz growth process involves multiple phases, moving interface and three-dimensional behavior. Much has been done to study these phenomena by means of numerical methods as well as experimental observations. A three-dimensional curvilinear finite volume based algorithm has been developed to model the Cz process. A body-fitted transformation based approach is adopted in conjunction with a multizone adaptive grid generation (MAGG) technique to accurately handle the three-dimensional problems of phase-change in irregular geometries with free and moving surfaces. The multizone adaptive model is used to perform a three-dimensional simulation of the Cz growth of silicon single crystals.Since the phase change interface are irregular in shape and they move in response to the solution, accurate treatment of these interfaces is important from numerical accuracy point of view. The multizone adaptive grid generation (MAGG) is the appropriate scheme for this purpose. Another challenge encountered is the moving and periodic boundary conditions, which is essential to the numerical solution of the governing equations. Special treatments are implemented to impose the periodic boundary condition in a particular direction and to determine the internal boundary position and shape varying with the combination of ambient physicochemical transport process and interfacial dynamics. As indicated above that the applications and processes characterized by multi-phase, moving interfaces and irregular shape render the associated physical phenomena three-dimensional and unsteady. Therefore a generalized 3D model rather than a 2D simulation, in which the governing equations are solved in a general non-orthogonal coordinate system, is constructed to describe and capture the features of the growth process. All this has been implemented and validated by using it to model the low pressure Cz growth of silicon. Accuracy of this scheme is demonstrated by agreement of simulation data with available experimental data. Using the quasi-steady state approximation, it is shown that the flow and temperature fields in the melt under certain operating conditions become asymmetric and unsteady even in the absence of extrinsic sources of asymmetry. Asymmetry in the flow and temperature fields, caused by high shear initiated phenomena, affects the interface shape in the azimuthal direction thus results in the thermal stress distribution in the vicinity, which has serious implications from crystal quality point of view.

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Cell adhesion is crucial to many pathophysiological processes, such as inflammatory reaction and tumor metastasis. It is mediated by specific interactions between receptors and ligands, and provides the physical linkages among cells. For example, interactions between selectins and glycoconjugate ligands mediate leukocyte initially tethering to and subsequently rolling on vascular surfaces in sites of inflammation or injury, which is determined by their fast kinetic rates. To mediate cell adhesion, the interacting receptors and ligands must anchor to apposing surfaces of two cells or a cell and the substratum, i.e. , the so-called two-dimensional (2D) binding, which differs from interactions in the fluid phase, i.e. , the three-dimensional (3D) binding. How structural variations and surface environments of interacting molecules affect their 2D kinetics, and how external forces manipulate their dissociation has little been known quantitatively, and nowadays attracts more and more attentions.