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171.
荆门非饱和膨胀土的变形与强度特性试验研究 总被引:7,自引:1,他引:6
通过压力板试验,对比分析了荆门原状膨胀土与石灰改良土持水特征的差异性;应用非饱和土三轴仪,开展了原状膨胀土、石灰改良膨胀土与重塑膨胀土的变形及强度特性试验。结果表明:①石灰改良膨胀土与原状膨胀土相比,其进气值有显著降低,残余含水率显著升高,土-水特征曲线两个特征点的斜率较为平缓,说明其水稳定性较好,土体性状更为稳定;②原状膨胀土和石灰改良膨胀土在非饱和与饱和状态的应力-应变关系曲线均呈应变软化型,随净围压的增大,应变软化的程度趋缓;随含水率的减小,峰值应力增大,应力峰值点有所提前,应变软化现象更加显著。饱和重塑膨胀土的应力-应变关系呈应变强化型,非饱和重塑膨胀土则呈现为应变软化型,但其应变软化的程度较前两类土大为趋缓;③经石灰改性后,膨胀土强度参数值有大幅度提高,即使在湿化饱和后,石灰改良膨胀土仍保持了相对稳定的力学性质和较高的抗剪强度参数值。相比之下,无论是重塑膨胀土,还是原状膨胀土,对湿化作用均十分敏感,其强度参数值或波动较大,或整体水平较低。 相似文献
172.
新疆墨玉绿洲耕地变化及人地关系演进驱动力研究 总被引:1,自引:0,他引:1
以新疆墨玉绿洲为例,借助土地利用遥感数据和社会经济统计资料,结合多年实地调查,利用分形理论,计算了墨玉绿洲1989,1999和2006年耕地资源的分维值D、稳定性指数SI和分维变△D,并根据其值的物理意义,对耕地的动态变化进行了定量和定性分析。进而利用典型性相关分析方法,从社会经济因素进行墨玉绿洲耕地变化趋势和驱动力的研究。结果表明:人口的增长和农业生产的发展是影响耕地变化的主要经济因素;一些政策因素,如土地限制性开发、退耕还林政策等对耕地变化影响也很大。最后引进经济密度的概念,进一步验证上述结论。 相似文献
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174.
计算不同尺度下空间目标的相似性是GIS研究的热点问题之一。点群是地理空间群组目标的一种,研究其相似性可对空间群组目标的计算机制图结果进行评价。以往的理论研究主要从影响点群目标的单一因子出发,对影响点群目标的简单因子进行分析,并以此提出相应计算模型。为了研究点群目标在不同尺度下的相似性问题,本文在前人研究的基础上,整合了影响点群目标相似性的主要因子(包括拓扑关系、方向关系、距离关系、分布范围和分布密度),并分别提出拓扑相似度、方向相似度、分布范围相似度、距离相似度分布和密度相似度的计算模型,从整体上把握计算点群目标的相似性。通过层次分析法,赋予5种因子相应的权重,最后集成不同尺度下点群目标相似度的总体计算模型。经过计算验证,该方法能较准确地计算不同尺度下点群目标的相似程度,为制图综合质量做出评价。 相似文献
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177.
Carl T. Dahlman 《The Professional geographer》2013,65(2):285-286
Abstract Most traditional segregation measures, such as the index of dissimilarity D, fail to distinguish spatial patterns effectively. Previously proposed spatial measures modifying D suffer from several shortcomings. This article describes a general spatial segregation index based upon the concept of composite population counts, which are derived from grouping people in neighboring areas together to account implicitly for spatial interaction of groups across unit boundaries. The suggested spatial index can overcome the disadvantages of previous indices and can assess the spatial extent of the segregated clusters. The results offer a more comprehensive depiction of spatial segregation of a region. 相似文献
178.
J. C. Hinton 《International journal of geographical information science》2013,27(7):877-890
Abstract The combined use of remotely-sensed images and vector GIS data has received considerable interest in recent years. This review article discusses the historical move towards closer integration of remote sensing and GIS technologies and the requirements of integrated software systems to enable remotely-sensed data to be combined with vector datasets for maximum effect. The benefits of integration to users of both GIS and remote sensing for environmental applications are reviewed and some thoughts are given on terminology and future directions in this field. 相似文献
179.
Shihong Du Qiao Wang Luo Guo 《International journal of geographical information science》2013,27(11):1649-1686
The scale dependences of topological relations are caused by the changes of spatial objects at different scales, which are induced by the reduction of attributes. Generally, the detailed partitions and multi-scale attributes are stored in spatial databases, while the coarse partitions are not. Consequently, the detailed topological relations can be computed and regarded as known information, while the coarse relations stay unknown. However, many applications (e.g., multi-scale spatial data query) need to deal with the topological relations at multiple scales. In this study new methods are proposed to model and derive the scale dependences of topological relations between lines and multi-scale region partitions. The scale dependences of topological relations are modeled and used to derive the relations between lines and coarse partitions from the relations about the detailed partitions. The derivation can be performed in two steps. At the first step, the topological dependences between a line and two meeting, covered and contained regions are computed and stored into composition tables, respectively. At the second step, a graph is used to represent the neighboring relations among the regions in a detailed partition. The scale dependences and detailed relations are then used to derive topological relations at the coarse level. Our methods can also be extended to handle the scale dependences of relations about disconnected regions, or the combinations of connected and disconnected regions. Because our methods use the scale dependences to derive relations at the coarse level, rather than generating coarse partition and computing the relations with geometric information, they are more efficient to support scale-dependent applications. 相似文献
180.
Xiao-Guang Zhou Jun Chen F. Benjamin Zhan Zhilin Li Marguerite Madden Ren-Liang Zhao 《International journal of geographical information science》2013,27(10):1983-2005
Intersection relations are important topological considerations in database update processes. The differentiation and identification of non-empty intersection relations between new updates and existing objects is one of the first steps in the automatic incremental update process for a land parcel database. The basic non-empty intersection relations are meet, overlap, cover, equal and inside, but these basic relationships cannot reflect the complex and detailed non-empty relations between a new update and the existing objects. It is therefore necessary to refine the basic non-empty topological relations to support and trigger the relevant update operations. Such relations have been refined by several researchers using topological invariants (e.g., dimension, type and sequence) to represent the intersection components. However, the intersection components often include only points and lines, and the refined types of 2-dimensional intersection components that occur between land parcels have not been defined. This study examines the refinement of non-empty relations among 2-dimensional land parcels and proposes a computation model. In this model, an entire spatial object is directly used as the operand, and two set operations (i.e., intersection (∩) and difference (\)) are applied to form the basic topological computation model. The Euler number is introduced to refine the relations with a single 2-dimensional intersection (i.e., cover, inside and overlap) and to distinguish the refined types of 2-dimensional intersection components for the relations with multiple intersections. In this study, the cover and overlap relations with single intersections between regions are refined into seven cases, and nine basic types of 2-dimensional intersection components are distinguished. A composite computation model is formed with both Euler number values and dimensional differences. In this model, the topological relations with single intersections are differentiated by the value of the dimension and the Euler number of the resulting set of the whole-object intersection and differences, whereas the relations with multiple intersections are discriminated by the value of the resulting set at a coarse level and are further differentiated by the type and sequence of the whole-object intersection component in a hierarchical manner. Based on the refined topological relations, an improved method for automatic and incremental updating of the land parcel database is presented. The effectiveness of the models and algorithms was verified by the incremental update of a land cover database. The results of this study represent a new avenue for automatic spatial data handling in incremental update processes. 相似文献