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81.
中国城市水土保持研究综述   总被引:3,自引:0,他引:3  
本文系统回顾了10多年来我国城市水土保持研究进展。首先从城市水土保持研究的阶段划分入手,将研究历程分为1995-1999年的问题导向型研究阶段和2000年至今的目标导向型研究阶段,并分析了不同阶段我国城市水土保持研究的重点和特色;其次,根据城市水土保持研究的理论框架从理论基础研究、形成机制研究、状况评价研究、保持措施研究四个方面进行了归纳与总结,另外对相关学科和理论发展也进行了介绍;最后,总结当前城市水土保持研究所存在的问题,提出结合城市土地利用开展基于城市水土保持的功能导向型研究,对未来研究发展的主要趋势和重点问题进行了探讨。  相似文献   
82.
1961-2005年水利水保措施对潮河流域年径流量的影响(英文)   总被引:1,自引:0,他引:1  
Taking the Chaohe River Basin above the Miyun Reservoir in North China as a study area,the characteristics and variation trends of annual runoff and annual precipitation during 1961-2005 were analyzed applying Mann-Kendall test method on the basis of the hydrologic data of the major hydrological station(Xiahui Station) located at the outlet of the drainage basin and the meteorological data of 17 rainfall stations.Human activities including water conservancy projects construction and water diversion as well as implementation of soil and water conservation from 1961 to 2005 were carefully studied using time series contrasting method.The referenced period(1961-1980) that influenced slightly by human activities and the compared period(1981-2005) that influenced significantly by water conservancy and soil conservation measures were identified according to the runoff variation process analysis and abrupt change points detection during 1961-2005 applying double accumulative curve method,mean shift t-test method and Mann-Kendall mutation test technique.Based on the establishment of a rainfall-runoff empirical statistical model,impacts and the runoff-reducing effects of water conservancy and soil conservation measures on runoff reduction were evaluated quantitatively.The major results could be summarized as follows:(1) The annual precipitation in the drainage basin tends to decrease while the runoff has declined markedly since the 1960s,the average annual runoff from 1991 to 2000 was only 90.9% in proportion to that from 1961 to 1970.(2) The annual runoff variations in the drainage basin are significantly related to human activities.(3) During 1981-1990,1991-2000,2001-2005 and 1981-2005,the average annual runoff reduction amounts were 1.15×108,0.28×108,1.10×108 and 0.79×108 m3 respectively and the average annual runoff-reducing effects were 31.99%,7.13%,40.71% and 23.79% accordingly.Runoff-reducing effects by water conservancy and soil conservation measures are more prominent in the low water period.  相似文献   
83.
Taking the Chaohe River Basin above the Miyun Reservoir in North China as a study area, the characteristics and variation trends of annual runoff and annual precipitation during 1961–2005 were analyzed applying Mann-Kendall test method on the basis of the hydrologic data of the major hydrological station (Xiahui Station) located at the outlet of the drainage basin and the meteorological data of 17 rainfall stations. Human activities including water conservancy projects construction and water diversion as well as implementation of soil and water conservation from 1961 to 2005 were carefully studied using time series contrasting method. The referenced period (1961–1980) that influenced slightly by human activities and the compared period (1981–2005) that influenced significantly by water conservancy and soil conservation measures were identified according to the runoff variation process analysis and abrupt change points detection during 1961–2005 applying double accumulative curve method, mean shift t-test method and Mann-Kendall mutation test technique. Based on the establishment of a rainfall-runoff empirical statistical model, impacts and the runoff-reducing effects of water conservancy and soil conservation measures on runoff reduction were evaluated quantitatively. The major results could be summarized as follows: (1) The annual precipitation in the drainage basin tends to decrease while the runoff has declined markedly since the 1960s, the average annual runoff from 1991 to 2000 was only 90.9% in proportion to that from 1961 to 1970. (2) The annual runoff variations in the drainage basin are significantly related to human activities. (3) During 1981–1990, 1991–2000, 2001–2005 and 1981–2005, the average annual runoff reduction amounts were 1.15×108, 0.28×108, 1.10×108 and 0.79×108 m3 respectively and the average annual runoff-reducing effects were 31.99%, 7.13%, 40.71% and 23.79% accordingly. Runoff-reducing effects by water conservancy and soil conservation measures are more prominent in the low water period.  相似文献   
84.
Human activities are exposing freshwater ecosystems to a wide range of stressors, whose direct and indirect effects can be alleviated or exacerbated through interactive effects with dynamic environmental drivers. This study used long-term data from two Neotropical lacustrine freshwater systems (Batata Lake, an Amazonian floodplain lake and Imboassica lagoon, an Atlantic coastal lagoon) subjected to different kinds of environmental fluctuations (i.e., flood pulse and sandbar opening) and anthropogenic impacts (i.e., siltation and eutrophication). Our objective was to determine whether the effects of human perturbations are contingent on modifications of important biotic and abiotic characteristics through environmental variability. For both ecosystems, environmental variability consistently interacted with anthropogenic perturbations to alter most of the variables analyzed, such as nutrient dynamics, chlorophyll-a concentration, zooplankton and benthic invertebrate species richness, and temporal community stability, which indicates that interactive effects between environmental variability and anthropogenic perturbations may impact a myriad of ecosystem properties. Furthermore, the nature of these interactive effects was highly dependent on the variable considered and on the ecosystem analyzed. For example, at Imboassica lagoon, sandbar openings interacted synergistically with trophic state to increase the phosphorus concentration in the water column. At Batata Lake, flooding generally alleviated the negative effects of siltation on species richness by both diluting inorganic suspended material concentration and by promoting local recruitment from the regional species pool. Such results indicate that our ability to understand and predict the outcome of anthropogenic impacts on inland aquatic systems can be hampered if we consider human stressors as “static” phenomena disconnected from dynamic interactions with major local environmental drivers.  相似文献   
85.
非饱和土弹塑性模型参数的试验确定及有限元法   总被引:1,自引:0,他引:1  
陈勇  刘德富  王世梅 《岩土力学》2009,30(2):542-546
简要介绍广泛应用的非饱和土Alonso模型的原理与发展,并通过3组共7个试样的非饱和土三轴试验,得到模型的11个参数。在饱和土Cam本构关系的基础上,推导出一个基于非饱和土Alonso模型的应力-应变增量方程的计算公式,该方程与饱和土的本构方程形式相同。编制了能够考虑净应力和吸力二者对土体硬化规律影响的有限元程序,从而为非饱和土弹塑性计算提供一条途径,便于进一步应用于实际工程。  相似文献   
86.
土体发生坍塌破坏不是偶然的现象,受控于多种因素,而这些因素均为变量,不能精确地知道它们的数值.土体颗粒的大小和形状、表面特征、排列形式及它们之间的连接特征,是影响土体坍塌破坏的因素.通过干燥细砂在3种密实度下的物理模型试验,对试验破坏过程及破坏形态进行分析,找出影响细砂堆积稳定性的因素及内部破坏机理.  相似文献   
87.
九寨沟保护区植被景观变化与生境破碎化研究   总被引:3,自引:0,他引:3  
根据1974、1994和2002年三个时段卫星影像,将土地覆盖类型划分为针叶林、针阔叶混交林、落叶阔叶林、灌丛、草地、裸地和水体7个类型。研究发现,九寨沟森林面积、特别是针叶林面积减少,各景观类型破碎化程度也在增大。与1974~1994年间森林丧失平均速率相比,1994~2002年间森林丧失速率明显放缓。第二期灌丛面积平均增长速率是第一期的3.5倍。随着生境破碎化的加剧,许多珍稀保护生物的前景变得难以预测,应以审慎的态度来对待所谓的“生态旅游”。  相似文献   
88.
为掌握江苏盐城滨海湿地獐(Hydripotes inermis)的最新种群数量与分布状况,于2007年3~5月,在江苏省盐城滨海湿地用样线法对獐的春季种群数量与分布进行了调查.调查结果表明,獐在盐城滨海湿地有2个分布区,一个在射阳县境内,以盐城国家级珍禽自然保护区核心区为中心,扩散至射阳芦苇公司及其周边区域;另一个位于大丰县境内,从大丰麋鹿保护区的第一核心区至第三核心区及周边荒地.獐在盐城滨海湿地的总数量在372只左右,其中盐城国家级自然保护区核心区分布獐的数量和密度最高,其数量约为327只,密度为1.9只/km2.与20世纪90年代调查数据相比,獐的分布范围和数量均显著下降.  相似文献   
89.
湿地土壤水源涵养功能研究进展   总被引:4,自引:0,他引:4  
湿地土壤依靠孔隙而发挥水源涵养功能,广义的湿地土壤水源涵养功能是指湿地土壤内多个水文过程及其水文效应的综合表现,而狭义的湿地土壤水源涵养功能仅指湿地土壤蓄水。主要从土壤水源涵养的机制、计算方法、土壤蓄水量及其对径流调节、影响土壤蓄水的因素等几个方面对当前湿地土壤水源涵养功能的研究进行了综述。土壤涵养水源是由于水分能在土壤孔隙中的存储、持留和运转。从力学的角度看,水分主要依赖于吸附力、毛管力和重力作用而持留。湿地土壤蓄水能力的3种计算方法各有优缺点,计算时应结合湿地水文波动的实际情况而选择。不同类型湿地的土壤蓄水能力因土壤本身性质而异。湿地土壤蓄水能力受土壤粒径组成、结构、孔隙、有机质和含水量等因素的影响,同时受自然及人为因素的调控。针对当前湿地土壤蓄水能力研究的不足,指出应加强对湿地蓄水能力的定量研究及计算方法的探讨;同时,土地利用对湿地土壤水源涵养功能影响的研究也需进一步加强。  相似文献   
90.
探讨了北京市海淀区翠湖国家城市湿地公园的水域生物多样性及保护方法,论证了生物防治藻类、高等植被恢复等基于物质循环再生原理的方法对水域生物多样性恢复的效果。实践表明,人工湿地污水净水系统、以营养环节来控制水体富营养化的生物水体防治方法,对翠湖湿地的水质有明显的净化、保护和提升作用,对水域生物多样性的保护起到了积极的作用。  相似文献   
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