119 resultados para Elevational Patterns


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 是否存在一般性的生物多样性垂直格局理论,是人们普遍关心的问题。为了解决这一疑问。本文设计了三个方面的问题作为研究的内容。一、标准化系统取样能够满足山地生物多样性研究的需要吗?二、山地植物群落中不同植物类群的物种丰富度沿海拔梯度有相同的格局变化吗?三、山地植物群落中,不同植物类群的群落水平多样性,包括物种丰富度、均匀度和群落多样性沿海拔梯度有怎样的变化?不同植物类群内,及不同植物类群间物种丰富度、物种均匀度和群落多样性之间的空间相互关系? 为了解决上述问题,我们采用了模拟和试验两类数据(来自北京东灵山地区7条垂直样带),研究中着重考虑了数据的空间相关性或尺度依赖性,应用地统计学和多元地统计学的方法对数据进行分析,得出如下结论: 一、标准化系统取样是不能满足山地物种多样性研究的需要的,它忽略了取样单元面积效应。理论上,文献所列的四种典型的生物多样性格局类型都可以随取样单元而相互转换;评价生物多样性垂直格局时,不存在唯一合适的取样单元尺度。通常在一定尺度范围内,多样性显现某一格局类型,超过了尺度阀值,格局类型会发生转换,但是存在一个最小取样单元尺度,小于这一尺度生物多样性的空间结构将不能正确显现;山地生物多样性分布具各向异性,垂直方向物种替代速率远大于水平方向,因此,不但取样面积,而且取样单元的形状也对多样性格局有重要影响。山地生物多样性格局研究中,以垂直方向作长边的长方形较为合适;本研究没有对物种多样性格局随取样单元发生转换的决定因素得出明确的结论,但 多样性的空间分布可能是一主要因素。 二、乔、灌、草和群落总的物种丰富度格局,大多数大尺度上呈现梯度格局,小尺度上呈斑块的聚集。物种丰富度垂直格局的尺度依赖性与坡向有密切关系,同一坡向的格局的特征表现出很强的一致性;乔、灌、草及总的植物物种丰富度垂直梯度格局与取样单元尺度的关系也表现出与坡向的密切关系,同一坡向合适的取样面积基本一致;总的来说,不同植物类群的物种丰富度垂直格局都表现出其独特的特点,不同坡向同一植物类群又表现出明显不同的特点。将我们的研究结果与其它山地物种丰富度的垂直格局研究进行比较,得出这样的推论:在山地植物多样性研究中,同一群落层次在相同的生物地理区(或气候带)内,物种丰富度具有一致的垂直格局类型,而在不同的生物地理区内具有不同的特点。分别研究不同群落层次物种丰富度在同一生物地理区不同地点,以及在不同生物地理区的垂直格局,有利于区别历史、进化因素和现时生态因素对生物多样性形成和维持的作用,形成一般的生物多样性理论。 三、乔、灌、草三层的群落多样性Simpson指数和物种丰富的垂直格局类型基本一致,多样性和丰富度格局的相似性不但表现在格局的类型上,而且表现在对空间的尺度依赖上,如自相关范围、大尺度上梯度效应等都表现出了一致性;均匀度格局变化比较复杂,在乔木层、阴坡灌木层与物种丰富度有相似的格局特征,阳坡灌木层均匀度则基本不随海拔变化;草本层均匀度很高,表现出与物种丰富度、多样性相反的格局。我们认为物种丰富度、多样性、均匀度沿着环境梯度变化以及它们之间的关系还不能确定是否有一般性特征,它们可能不但与生物类群而且与垂直样带所处的环境有关。理论研究认为在大尺度上群落多样性的变化主要反映在物种丰富度水平上的变化,主要由均匀度引起的多样性的变化可能只存在小范围的环境梯度中,本文的研究为这一理论提供了佐证。理论模拟表明物种丰富度、均匀度和多样性之间是简单的强正相关性,丰富度和均匀度相互独立存在,我们证明了它们之间并非简单的正相关,丰富度和均匀度也非简单独立存在,它们的关系与尺度、坡向(环境条件)、植物类群密切相关,不同的生态过程或因素在不同尺度上的作用决定了它们的关系类型。乔、灌层间各多样性测度间总体呈正相关关系,并随尺度增加而降低;乔、草层间多样性测度间的关系与乔、灌层间明显不同,乔木层各多样性测度与草本层丰富度、多样性指数间显著负相关,与草本层均匀度间弱正相关,并随尺度增大渐弱;灌、草层间与乔、草层间情形相似,特别是阴坡。不同层次间多样性测度的相互关系还与坡向和尺度密切相关。 通过本研究,虽然不能肯定回答是否存在一般性的生物多样性垂直格局理论,但是我们认为在同一生物地理区域内,对同一生物类群(具有相同或相似的生物、生态学特性,具有对外界环境相同或相似的适应方式),并匹配于适宜的尺度揭示生物多样性垂直格局,并比较不同生物地理区、不同生物类群的生物多样性垂直格局,可能会找出一般性的生物多样性垂直格局理论。

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Elevational and latitudinal patterns of species richness for birds and mammals were compared with human population density in relation to nature reserve designation in two areas of Yunnan Province, China. Results suggest that species richness is not the same for the two areas. In Gaoligongshan Region, species richness is inversely correlated with elevation and altitude, while reserve designation is positively correlated with elevation and latitude. In Jingdong County, reserve designations are positively correlated with elevation, but species richness shows no clear trends. In general, the present situation is strongly influenced by human activities. It appears that reserve designation is mismatched with species richness in Gaoligongshan Region, while there is a better fit between the two in Jingdong County. In both areas, however, it appeared that reserves were located primarily in order to reduce conflict with humans rather than to maximize conservation of biodiversity, probably because humans were responsible for forest-especially primary forest-destruction and degradation in the low-lying areas.

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In this paper, we propose a method for forming steady patterns of microparticles in a dispersion using optical tweezers. We demonstrate how to control the congregation of particles in a dispersion and to manually fabricate a pattern, The steady pattern (nay be useful for in-depth research, and the method will have applications in biology and nanotechnology.

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The velocity fields of oscillatory convection have been measured using the techniques of Particle Image Velocimetry (PIV) in a liquid bridge of half floating zone with small typical scales of a few millimeters for emphasizing the thermocapillary effect in comparison with the effect of buoyancy. The flow patterns of the oscillatory flow have been studied experimentally in a liquid bridge. The flow patterns in the liquid bridge are classified with mode numbers according to oscillatory flow characteristics. Results of the experiment show that the mode depends on the aspect ratio as well as the volume ratio of the liquid bridge. The experimental results are helpful for studying the structure of flow at the onset of oscillatory thermocapillary convection in a liquid bridge.

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Experimental studies have been performed for horizontal two-phase air-water flows at normal and reduced gravity conditions in a square cross-section channel. The experiments at reduced gravity are conducted on board the Russian IL-76 reduced gravity airplane. Four flow patterns, namely bubble, slug, slug-annular transition and annular flows, are observed depending on the liquid and gas superficial velocities at both conditions. Semi-theoretical Weber number model is developed to include the shape influence on the slug-annular transition. It is shown that its prediction is in reasonable agreement with the experimental slug-annular transition under both conditions. For the case of two-phase gas-liquid flow with large value of the Froude number, the drift-flux model can predict well the observed boundary between bubble and slug flows.

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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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Bends are widely used in pipelines carrying single- and two-phase fluids in both ground and space applications. In particular, they play more important role in space applications due to the extreme spatial constraints. In the present study, a set of experimental data of two-phase flow patterns and their transitions in a 90degrees bend with inner diameter of 12.7 mm. and curvature radius of 76.5 mm at microgravity conditions are reported. Gas and liquid superficial velocities are found to range from (1.0 similar to 23.6) m/s for gas and (0.09 similar to 0.5) m/s for liquid, respectively. Three major flow patterns, namely slug, slug-annular transitional, and annular flows, are observed in this study. Focusing on the differences between flow patterns in bends and their counterparts in straight pipes, detailed analyses of their characteristics are made. The transitions between adjoining flow patterns are found to be more or less the same as those in straight pipes, and can be predicted using Weber number models satisfactorily. The reasons for such agreement are carefully examined.

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We investigate the existence of wavelike solution for the logistic coupled map lattices for which the spatiotemporal periodic patterns can be predicted by a simple two-dimensional mapping. The existence of such wavelike solutions is proved by the implicit function theorem with constraints. We also examine the stabilities of these wave solutions under perturbations of uniform small deformation type. We show that in some specific cases these perturbations are completely general. The technique used in this paper is also applicable to investigate other space-time regular patterns.

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This paper presents a measurement of flow patterns and flow velocities of gas-water two-phase flows based on the technique of electrical resistance tomography (ERT) in a 40m horizontal flow loop. A single-plane and dual-plane ERT sensor on conductive ring technique were used to gather sufficient information for the implementation of flow characteristics particularly flow pattern recognition and air cavity velocity measurement. A fast data collection strategy was applied to the dual-plane ERT sensor and an iterative algorithm was used for image reconstruction. Results, in respect to flow patterns and velocity maps, are reported.

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Different conical emission (CE) patterns are obtained experimentally at various incident powers and beam sizes of pump laser pulses with pulse durations of 7 fs, 44 fs and 100 fs. The results show that it is the incident power but not the incident power density that determines a certain CE pattern. In addition, the critical powers for similar CE patterns are nearly the same for the laser pulses with the same spectral bandwidth. Furthermore, as far as a certain CE pattern is concerned, the wider the spectral bandwidth of pump laser pulse is, the higher the critical power is. This will hopefully provide new insights for the generation of CE pattern in optical medium.

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Based on the generalized Huygens-Fresnel diffraction integral theory and the stationary-phase method, we analyze the influence on diffraction-free beam patterns of an elliptical manufacture error in an axicon. The numerical simulation is compared with the beam patterns photographed by using a CCD camera. Theoretical simulation and experimental results indicate that the intensity of the central spot decreases with increasing elliptical manufacture defect and propagation distance. Meanwhile, the bright rings around the central spot are gradually split into four or more symmetrical bright spots. The experimental results fit the theoretical simulation very well. (C) 2008 Society of Photo-Optical Instrumentation Engineers.