47 resultados para Green space

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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城市绿地是城市景观的重要组成部分,起着调节城市生态环境、美化城市景观、提供休闲游憩场所的重要作用,在城市发展中扮演着关键角色。沈阳市近年来将城市绿地建设作为城市建设的重要方面,取得了显著成效。因此,本文利用2006年Quick Bird高分辨率卫星影像对沈阳市三环内的城市绿地景观格局进行了研究,具体结论如下: (1) 沈阳三环内绿地斑块18261个,绿地面积 173.71km2,斑块数目主要以中型斑块为主(62.25%);在面积上以大型斑块为主(85.59%);绿地总体呈现斑块分布不均衡。 (2) 居住绿地、单位附属绿地与道路绿地破碎化程度高,分布分散,斑块形状复杂。城市绿地廊道连通性较高,道路绿地平均分维数最大。 (3) 公园绿地亚类中,综合型公园与带状公园面积较大,破碎化程度低;社区公园与街头绿地面积较小,破碎化程度高,分布分散。 (4) 绿地景观整体上,绿地斑块密度较大,破碎化程度高,景观多样性指数为1.6,斑块类型丰富,均匀度指数为0.73,蔓延度指数为0.83,存在着少数类型控制整个景观的现象。 (5) 绿地系统梯度分析表明:类型水平上,不同的绿地类型沿景观格局梯度表现出明显的空间特征;景观水平上,不同景观指数沿样带梯度也表现出差异性,表明城市化导致景观的破碎化程度增大,景观异质性增高。城乡边缘区绿地类型最为丰富,多样性指数较高,其格局有利于绿地生态环境维护功能的发挥。

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本文利用中高分辨率遥感影像研究2006年沈阳市三环内城市绿地的空间格局及2001-2006年间的变化,以期对5年的高强度绿化建设进行评价。利用QuickBird高分辨率遥感影像,结合基于知识分类方法提取的植被覆盖信息和目视解译方法提取的土地利用信息,分析了2006年附属绿地的空间分布格局和公园绿地可达性。利用2001、2006年两景Landsat TM影像,基于线性混合分解方法提取的植被盖度信息,分析了5年间的绿化建设强度及其空间分布。 本文得到以下结论: 1) 工业用地和公共设施用地的绿化率均较高,分别是28.9%和32.3%。研究区域多层老式居住用地和道路的绿化率只有近20%。新居住用地中高层片块居住用地的平均斑块面积较小,主要是由小块的街区角落开发而成,绿化率只有10.3%;其余的新居住用地的绿化率均高于多层老式居住用地。居住用地高度类型相同的情况下,花园式居住用地比片块式居住用地拥有更高的绿化率。 2) 附属绿地绿化率随距市中心距离的递增梯度反映了城市内外绿化状况的两极分化现象,在几种主要的城市用地类型之间存在差异:公共设施(4.16%∙km-1)>多层老式居住用地(3.85%∙km-1)>新居住用地(3.05%∙km-1)>道路(2.36%∙km-1)。新居住用地弱于多层老式居住用地,表明随着旧城改造的持续进行,居住用地的内外两极分化现象可以得到缓解。公共设施用地的内外两极分化现象较严重,城市化进程中慎重对待高绿化率的公共设施用地如高校等迫于地价压力的外迁行为。 3) 公园绿地可达性分析的结果表明,只有29.25%的居住用地分布在距最近公园绿地5分钟的步行范围内,43.31%的居住用地在5-15分钟的步行范围内,建议持续增加公园绿地建设,尤其是在工商业密集区。研究区域尚未出现居住用地绿化环境的马太效应(高公园绿地可达性+高附属绿地绿化率)。 4) 2001-2006年,道路、居住用地、公共设施用地、公共绿地及广场的植被盖度均有不同程度的增加(5%-9%),证实了5年间绿化建设力度之大;工业用地的植被盖度几乎没有变化,原因估计是工业用地空间属于非公共空间,不属于公共绿化建设区域。5年间植被增量空间分布均匀,没有针对低绿化覆盖率地区加强绿化建设力度,部分缓解了绿化率的城市内外两极分化现象。

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The experiment result of Nd:YVO4 laser pumped by laser diode that was amplified by double-cladding Yb3+ fiber is reported. Stable mode-locking pulses are obtained at repetition rate of 320 MHz and the output power is 15 mW. When laser power is amplified by Yb3+- doped double-cladding fiber amplifier, its power can get to 600 mW. Based on these, experiment of double-frequency is carried out, and green laser with power of 4 mW is obtained. (c) 2007 Wiley Periodicals, Inc.

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A closed aquatic ecosystem (CAES) was developed to stud), the effects of microgravity on the function of closed ecosystems aboard the Chinese retrieved satellite and on the spacecraft SHENZHOU-II. These systems housed a small freshwater snail (Bulinus australianus) and an autotrophic green algae (Chlorella pyrenoidosa). The results of the test on the satellite were that the concentration of algae changed little, but that the snails died during the experiments. We then sought to optimize the function of the control system, the cultural conditions and the data acquisition system and carried out an experiment on the spacecraft SHENZHOU-II. Using various sensors to monitor the CAES, real-time data regarding the operation of the CAES in microgravity was acquired. In addition, all on-board Ig centrifuge was included to identify gravity-related factors. It was found that microgravity is the major factor affecting the operation of the CAES in space. The change in biomass of the primary producer during each day in microgravity was larger than that of the control groups. The mean biomass concentration per day in the microgravity group decreased, but that of the control groups increased for several days and then leveled off. Space effects on the biomass of a primary producer may be a result of microgravity effects leading to increasing metabolic rates of the consumer combined with decreases in photosynthesis. (c) 2007 COSPAR. Published by Elsevier Ltd. All rights reserved.

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Spectral properties of a double quantum dot (QD) structure are studied by a causal Green's function (GF) approach. The double QD system is modeled by an Anderson-type Hamiltonian in which both the intra- and interdot Coulomb interactions are taken into account. The GF's are derived by an equation-of-motion method and the real-space renormalization-group technique. The numerical results show that the average occupation number of electrons in the QD exhibits staircase features and the local density of states depends appreciably on the electron occupation of the dot.

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We determine the mobility of positive and negative charge carriers in a soluble green-emitting alternating block copolymer with, a methoxy bi-subsbituted conjugated segment. The negative charge carrier mobility of 6 x 10(-11) cm(2)/V.s is directly determined using space-charge-limited current analytical expressions. Positive charge carrier transport is also space-charge-limited, with a mobility of I x 10(-8) cm(2)/V.s. The electron trap distribution is exponential, with a characteristic energy of similar to 0.12 eV. A hole trap with energy similar to 0.4 eV was observed. This copolymer is used as emissive material in organic light-emitting diodes that present brightness of similar to 900 cd/m(2) at 12.5 V.

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1999年,在我国实践5号卫星上完成了两层流体空间实验,实验研究两层不相混合流体的纯Marangoni对流(温度梯度与界面垂直)与热毛细对流(温度梯度方向与流体界面平行).前者存在发生Marangoni对流的最小临界温差值△Tc,低于该值流体系统处于静止状态;后者中只要存在沿界面的温度梯度便会产生热毛细对流.空间实验采用石蜡和氟化液两层流体新体系,实现了平整的液-液交界面,并从卫星上传回上万幅数字图像.通过多幅图像叠加处理得到了定量的流速场.数值模拟计算分析了相应工况时对流流动的速度场,两者的流场结构和速度大小基本一致,实验验证了理论模型.

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The space experimental device for testing the Marangoni drop migrations has been discussed in the present paper. The experiment is one of the spaceship projects of China. In comparison with similar devices, it has the ability of completing all the scientific experiments by both auto controlling and telescience methods. It not only can perform drop migration experiments of large Reynolds numbers but also has an equi-thick interferential system.

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To further investigate the mechanism of acoustic emission (AE) in the rock fracture experiment, moment tensor analysis was carried out. The AE sources characterized by crack sizes, orientations and fracture modes, are represented by a time-dependent momen

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A first experimental study on two-phase how patterns at a long-term, steady microgravity condition was conducted on board the Russian Space Station "MIR" in August 1999. Carbogal and air are used as the liquid and the gas phase, respectively. Bubble, slug, slug-annular transitional, and annular hows are observed. A new region of annular how with lower liquid superficial velocity is discovered, and the region of the slug-annular transitional flow is wider than that observed by experiments on board the parabolic aircraft. The main patterns are bubble, slug-annular transitional and annular flows based on the experiments on board MIR space station. Some influences on the two-phase how patterns in the present experiments are discussed.

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The progress of the research activities on space material sciences, microgravity ‰uid physics and combustion, space life sciences and biotechnology research, fundamental Physics in China are brie‰y summarized in the present paper. The major space missions and experimental results obtained on board the Chinese recoverable/non-recoverable satellites and the Chinese manned spaceship named ``Shen-Zhou'' are presented summarily. The recent main activities of the ground-based studies in China are introduced in brief.

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The optical interference method is a promising technique for measuring temperature, density, and concentration in fluids. The non-intrusive and non-invasive nature of its optical techniques to the measured section are its most outstanding features. However, the adverse experiment environment, especially regarding shaking and vibrating, greatly restricts the application of the interferometer. In the present work, an optical diagnostic system consisting of a Mach-Zehnder interferometer (named after physicists Ludwig Mach) and an image processor has been developed that increases the measuring sensitivity compared to conventional experimental methods in fluid mechanics. An image processor has also been developed for obtaining quantitative results by using Fourier transformation. The present facility has been used in observing and measuring the mass transfer process of a water droplet in EAFP protein solution under microgravity condition provided by the satellite Shi Jian No. 8.

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Cell culture and growth in space is crucial to understand the cellular responses under microgravity. The effects of microgravity were coupled with such environment restrictions as medium perfusion, in which the underlying mechanism has been poorly understood. In the present work, a customer-made counter sheet-flow sandwich cell culture device was developed upon a biomechanical concept from fish gill breathing. The sandwich culture unit consists of two side chambers where the medium flow is counter-directional, a central chamber where the cells are cultured, and two porous polycarbonate membranes between side and central chambers. Flow dynamics analysis revealed the symmetrical velocity profile and uniform low shear rate distribution of flowing medium inside the central culture chamber, which promotes sufficient mass transport and nutrient supply for mammalian cell growth. An on-orbit experiment performed on a recovery satellite was used to validate the availability of the device.

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Results from a space experiment on bubble thermocapillary migration conducted on board the Chinese 22nd recoverable satellite were presented. Considering the temperature field in the cell was disturbed by the accumulated bubbles, the temperature gradient was corrected firstly with the help of the temperature measurement data at six points and numerical simulation. Marangoni number (Ma) of single bubble migrating in the space experiment ranged from 98.04 to 9288, exceeding that in the previous experiment data. The experiment data including the track and the velocity of two bubble thermocapillary migration showed that a smaller bubble would move slower as it was passed by a larger one, and the smaller one would even rest in a short time when the size ratio was large enough.