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111.
基于GIS和景观生态学的土地整理景观研究 总被引:1,自引:0,他引:1
运用GIS技术和景观生态学理论方法,以安徽省淮南市潘集区市级投资重点土地整理项目为例,选取3类景观指标,对项目区内土地整理前后的土地利用现状和景观格局变化情况进行研究。结果表明: 景观类型中水田斑块占绝对优势,斑块分维数、形状指数呈下降趋势,表明斑块形状趋于规则和简单; 斑块数量和斑块密度降低,平均斑块面积和最大斑块面积增加,最大斑块指数增大,景观破碎度降低; 平均分维数和平均形状指数增大,表明景观形状较整理前变得规则,但总体形态变得复杂; 多样性指数和均匀度指数降低,表明在增加了景观分布均匀程度的同时降低了景观的多样性,景观类型有所减少。 相似文献
112.
皖南休宁地区恐龙脚印等化石的产出特征 总被引:5,自引:0,他引:5
皖南休宁地区发现“三位一体”的恐龙骨骼化石、恐龙蛋化石、恐龙足迹和尾迹化石。本文着重描述这批化石的形态大小和结构特点,并从古生态学方面对化石进行了探讨分析;按化石产出层位,对应的各类恐龙活动时间总计约为40Ma。 相似文献
113.
Impulsive force of debris flow on a curved dam 总被引:8,自引:0,他引:8
Although Sabo dams are an efficient method for river and basin management, traditional Sabo dams have a great impact on ecology and landscape. Moreover, such dams are hit and often damaged by great impulsive force when they block the debris flow. Therefore, alternative shapes for Sabo dam deserve thorough investigation. In this investigation, a curved dam was designed by changing the upstream-dam-surface geometric shape to reduce the impulsive force of the debris flow, with enhanced stability and reduced concrete mass being the anticipated outcomes. In this study, the flume and laboratory facilities simulated the impulsive force of the debris flow to the Sabo dams. Three geometric forms, including vertical, slanted and curved Sabo dams, were used to determine the impulsive force. Impulsive force theories of the debris flow were derived from the momentum equation and the Bernoulli equation. In these, the impulsive force was balanced by the friction force of the Sabo dam and the opposite force of the load cell behind the dam as it was hit by the debris flow. Positive correlations were found when comparing the experimental data with the theoretical results. These findings suggest that our impulsive force theory has predictive validity with regard to the experimental data. The results from both theory and experimental data clearly show that curved darns were sustained less force than the other darns under the same debris flow. This comparison demonstrates the importance of curved geometry for a well-designed Sabo dam. 相似文献
114.
产业活动是维系人类生存与社会发展所需的物质创造过程.自工业社会以来,形成的产业开发系统与自然生态系统是两个截然不同的演化模式. 相似文献
115.
A 332-cm long lacustrine core was drilled in the Nam Co in the central-southern part of the Tibetan Plateau. From the core, 15 species of ostracods (Crustacea: Ostracoda), which belong to 6 genera have been identified. According to the variations of the ostracod assem-blages and the ostracods ecological features, which are sensitive to the changing environ-ment, three main stages can be distinguished as follows: Stage I was from 8400 to 6800 a BP, during which the climate was cold-humid, and the lake depth changed from shallow to deep. Stage II was from 6400 to 2500 a BP, during which the climate changed from warm-humid to cold-humid, and then to cold-dry. The lake depth gradually became deep. The shifting of cli-mate, from wet-cold to dry-cold during this period, had constructed the basis of present en-vironment in the Nam Co. Stage III was from 2500 a BP to the present, which showed a trait of lake depth increasing. At the earlier period of this stage, the climate kept as cold-dry as that in the former stage, but the salinity of the lake increased. At the later period of this stage, the degree of cold-dry was enhanced, and the activities of land surface runoff tended to be weakened. Our research also found that the peak values of ostracods with black shell was coherent with the maximum production of the ostracods, and agreed with the increasing sedimentary water dynamics. This indicated that the ostracods with black shell was simulta-neous with the high prolificacy of ostracod, and transported from other places. The abun-dance of Candona juvenile shells reflected the high mortality of that kind of ostracods under an unfavorable condition. This was probably a result of the rapid change of water dynamics of sedimentary environment. 相似文献
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虾蟹类生物能量学研究进展 总被引:6,自引:1,他引:5
虾蟹类生物能量学(Bioenergetics)是研究能量在虾蟹类体内转换的一门学科,其中心问题是研究虾蟹类体内能量收支各组分之间的定量关系以及环境因子(温度、盐度和pH等)、营养因子(饵料种类、蛋白质、脂肪和碳水化合物等)和内源因子(发育阶段和体质量等)对这些关系的影响,探讨生物调节其能量分配的生理生态学机制。Klein最早提出了能量在虾蟹类体内流动和转换的基本模型,该模型可归纳为以下能量收支式:C=G+R+U+F+E,式中C为摄食能,G为生长能,R为呼吸能,U为排泄能,F为排粪能,E为蜕壳能。 相似文献
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