991 resultados para 669


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描述了一台在兰州放射性次级束流线(RIBLL)前端安装的速度选择器系统,该系统由2个三组合四极透镜组和1个正交的电磁场组成,将用于熔合蒸发余核的研究.介绍了该设备的设计思路、基本参数和本底抑制能力、传输效率、角度接收度以及动量接收度的测量结果.结果表明该系统达到设计要求,进行适当改造后可用于Z≤110的超重核素的研究和中重核区滴线核的研究.

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A recoil separator Wien-filter which was developed for the Radioactive Ion Beam Line in Lanzhou (RIBLL) as an extension is described. It consists of 2 quadruple triplets and a standard Wien-filter. It was designed for study of the fusion-evaporation reactions. The overall design, background suppression, the transmission efficiency, the angular acceptance and the momentum acceptance have been described. All the performances fulfil the designed requirements. Based on the test results, with some modifications the investigations of the nuclei with Z <= 110 and the drip-line nuclei in the medium-heavy mass region can be carried out with this facility.

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超导磁铁以其能实现极高的磁场强度和较低的能量损耗的优势,正在迅速成为现代加速器系统中普遍采用的一项技术。为超导磁体提供励磁的超导电源也就成为了必需研究的课题。此外,与之相似的低压大电流电源也大量的应用于加速器系统中,服务于核物理研究工作。针对这类电源在加速器中的应用,本课题的主要挑战在于如何实现一种高效率和低纹波输出特性的电源。为此,本论文的作者采用了一种完全不同的拓扑结构“多路多相同步整流BUCK变换器”,来达到高效率和低纹波的目标。并尝试使用数字技术来实现控制单元。本论文首先详细介绍了“多路多相同步整流BUCK变换器”的拓扑,通过计算和推导介绍了这种拓扑是如何提高效率和减少纹波电流输出的。然后介绍了这种拓扑结构所必需解决的均流问题、其产生原因和解决办法:一种几乎无损的单路电流的测量方法,以及这种测量方法的原理和实现方法。之后介绍了整个电源的参数计算和PCB板设计的一些细节。最后详细介绍了用MCU实现的控制器的设计细节。作为超导电源必配的失超保护装置,它担负着在失超故障状态,将超导磁体内存储的能量在尽量短的时间内消耗在外部负载上,以用于实现保护超导磁体的功能。因此超导磁铁失超保护装置 的设计原则是:可靠性和经济性。本论文最后一部分详细介绍了按照这个目标设计的超导磁铁失超保护装置及其设计细节

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采用定位监测法,对2002—2005年黄土丘陵区小流域土壤水分的时空动态规律及其主要影响因素进行了分析.结果表明,研究区年均土壤水分剖面呈倒"L"型,水分最低点出现在1.0m深处.表层(0~0.2m)和下层(2.4m以下)土壤水分年际间的差异达显著水平,而季节间的显著差异则表现在土壤表层和中层(1.0~2.4m);干旱年的降水不足显著提高了中、下层土壤水分的空间变异性,而丰水年的降水补充作用则显著降低了上层土壤水分的空间变异性,对中、下层土壤水分变异的影响不大.坡向对土壤水分变异的影响最大,其次是土地利用类型,坡位的影响最小.在干旱年或每年雨季开始时,坡向对土壤水分的影响随土层的加深而减弱,土地利用类型的影响则随之增强;在丰水年或每年雨季结束时,土地利用类型只对上层土壤水分状况具有显著影响,且其影响程度小于坡向的影响.

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根据野外调查,分析了沙地云杉林的植物区系成分,进行了种子植物的统计并得出结论:在沙地云杉林中,共有161种植物,分别属于49科,123属。其中1种蕨类植物,2种裸子植物,158种种子植物。共有10种地理成分分布类型,其中以达乌里-蒙古成分占优势,内蒙古自治区的特有成分只有沙地云杉一种。根据优势成分分析,发现在乔木层中只有沙地云杉和白桦达到存在度的4~5级,灌木层中只有黑果木旬子木达到5级。根据相似系数比较发现:沙地云杉林有56.8%的科、47.4%的属、47.4%的种与大针茅草原相同;有60.8%的科、22.3%的属、7.2%的种与长白山的典型暗针叶林相同,因此沙地云杉林仍然属于暗针叶林范畴。

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为了诊断沙地樟子松人工林的衰退原因,我们比较分析了沙地樟子松天然林和人工林中的叶片养分含量。结果表明,天然林中的樟子松叶片内氮、磷含量均比人工林中低,而钾含量比人工林高。樟子松人工林叶片中 N:P, P: K 和N: K在45年前随年龄增加而增加,从植物养分含量的角度来看,这一结果表明氮或磷可能不是沙地樟子松生长的绝对限制因子。然而,天然林和人工林叶片中的钾含量比以前报道过的松属植物中的含量都要低。天然林叶片中的N: P比值在正常的范围内,但人工林的则在该范围以外。这些结果表明天然林具有比人工林更好的养分平衡状况。如果只从樟子松的生长地来考虑,我们可以认为樟子松人工林的衰退现象可能是因其它的矿物元素或者氮和磷的有效性,而不是氮和磷的绝对含量不足造成的。养分的不平衡状况和人工林内针叶快速分解可能也是衰退的重要因素。图3表3参42。

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遥感应用的本质是投入专业知识从对地观测影像中提炼专题信息,并以之服务于各类分析与决策的过程。其中,信息计算是整个遥感应用服务技术链的基底。本文在传承地学信息图谱理论的基础上,提出了遥感"图-谱"信息耦合的空间认知理论,构建了"像元—基元—目标—格局"为一体的遥感信息图谱计算的理论方法体系,将其分为"像元级"和"对象级"两个层次,并阐述了高性能计算环境支持下,遥感信息图谱计算平台的设计开发思路及目前研发进展,总结了遥感信息图谱计算的发展趋势和重点研究问题。

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Polycrystalline nanotubular Bi2Te3 could be prepared via a high-temperature solution process using nanoscale tellurium, decomposed from trioctylphosphine oxide (TOPO) extracted tellurium species (Te-TOPO), as sacrificial template. The formation of such tubular structure is believed to be the result of outward diffusion of Te during the alloying process. The electrical properties (Seebeck coefficient and electrical conductivity) of the polycrystalline nanotubular Bi2Te3 have been studied and the experimental results show that the electrical conductivity is approximately three orders of magnitude smaller than bulk bismuth telluride materials mainly due to the much larger resistance brought by the insufficient contact between the nanotubular structures.

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As one member of high performance fibers, aromatic polyimide fibers possess many advantages, such as high strength, high modulus, high and low temperature resistance, and radiation resistance. However, the preparation of the high performance fibers is so difficult that the commercial fibers have not been produced except P84 with good flame retardancy. In this report, a polyimide was synthesized from 3,3',4,4'-biphenyltetracarboxylic dianhydride (BPDA) and 4,4'-oxydianiline (ODA) and the fibers were prepared from its solution by a dry-jet wet-spinning process. The formation of the as-spun fibers in different coagulation bath composition was discussed. Scanning electron microscope (SEMI) was employed to study the morphology of the as-spun fibers. As a result, the remnant solvent existed in the as-spun fibers generated from coagulation bath of alcohol and water. There were many fibrils and microvoids with the dimension of tens of nanometers in the fibers. One could observe the obvious fibrillation and the drawn fibers.

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The interactions of Safranin T (ST) with several nucleic acids have been investigated by electrochemical, UV-visible and CD spectroscopic techniques. The form of the nucleic acid-ST complexes is sensitive to the ratio of the two species. Two electrochemically inactive complexes such as, nucleic acid-ST and nucleic acid-2ST, were formed while ST interacts with nucleic acids. Two processes were obtained from spectral experiments: (1) at the high value of R (R is defined as the ratio of the total concentration of ST to that of nucleic acid), ST is groove-binding with stacking, (2) st the low value of R, ST is groove-binding without stacking. Intrinsic binding constants were obtained by spectral methods. The experiments also show that electrostatic binding plays an important role in the interaction of ST with nucleic acids.

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The present work investigates the effects of cyclic fatigue loading on the residual properties of an injection-molded composite, carbon-fiber-reinforced poly(phenylene ether ketone) (CF/PEK-C), and damage development in this material under fatigue lending. Test specimens, which had been conditioned to various preselected fatigue damage stages, were measured for their residual properties. The results indicated that cyclic fatigue loading alters the constitutive behavior of the injection-molded composite, especially in the non-linear portion of the stress/strain curve. The residual strength decreases with increase in the number of fatigue cycles as a consequence of the accumulation of fatigue damage, which is dominated by the growth of microcracks. While the residual modulus increases slightly with cyclic fatigue loading, this is probably due to the oriented hardening resulting from creep deformation which is induced during cyclic loading. (C) 1997 Elsevier Science Limited.

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The crystal structure of poly(ether ketone ketone) (PEKK) is predicted by using Cerius2 software according to the wide angle X-ray diffraction (WAXD) experiment result. The predicted structure has a planar zigzag chain conformation between ether oxygen and ketone carbons in an orthorhombic lattice. Average zigzag angle is 126 degrees and average torsion angle is 30.32 degrees. The WAXD powder pattern calculated from the crystal packing model is in good agreement with the experiment result.

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The cylindrical 'D'-size batteries were fabricated by polyaniline paste cathode and lithium foil anode sandwiched with microporous polypropylene separator. The electrolyte used was LiClO4 dissolved in a mixed solvent of propylene carbonate and dimethoxyethane. The results of charge/discharge curves, charge/discharge cycles, the short-circuit current, the open-circuit voltage storage and the change of discharge capacity with temperature, discharge current are reported.