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701.
青藏高原土壤水热分布特征及冻融过程在季节转换中的作用 总被引:21,自引:0,他引:21
利用GAME-Tibet期间所取得的高分辩率土壤温度和含水量资料,对青藏高原(主要是藏北高原)土壤水热分布特征及冻融过程在季节转换中的作用进行了分析。指出藏北高原4cm学深处土壤在10月份开始冻结,次年4-5月份开始消融,冻结持续时间长达5-7个月。冻结过程有利于土壤维持其水分,因此,在刚刚开始消融时土壤含水量仍然很高。从而为夏季风爆发前土壤通过蒸发向大气提供水分打下了基础。指出土壤冻融过程可能在高原季节转换中起着重要作用。 相似文献
702.
703.
西安翠华山山崩地质遗迹资源保护 总被引:5,自引:3,他引:5
文论述了西安翠华山山崩地质遗迹资源保护的目的,进行了保护分区,将其分为核心保护区、缓冲区和视域保护区三个区,重点分析了核心保护区的保护现状,并在此基础上提出了相应的保护内容和对策,以实现山崩地质遗迹资源的可持续利用和发展。 相似文献
704.
705.
Research progress of socio-economic water cycle in China 总被引:3,自引:0,他引:3
China has made great progress in the study of socio-economic water cycle. She has completed national water resources appraisement
and medium to long-term water supply planning. She has been engaging in study on water-deficient regions in North China and
Northwest China for about half a century. For solving water shortage problem in northern China, she has put forward the famous
South-to-North Water Transferring Projects, which has been set as one of the four biggest national projects in the Tenth Five-Year-Plan
period although there are still debates. For promoting water use efficiency, China has been reforming her water management
system, including water right system and water price system. There has already been a case of water right purchase. China
has also done a lot of research on the interaction between human activity, water and ecosystem. For meeting the need of sustainability
and coordinating water resources development and environmental protection, the study of ecological water requirement became
very hot in recent years. There are three focuses of socio-economic water cycle study now in China: water transfer projects
from the south to the north, water resources management and ecological water requirement. 相似文献
706.
According to the principle of the eruption of debris flows, the new torrent classification techniques are brought forward. The torrent there can be divided into 4 types such as the debris flow torrent with high destructive strength, the debris flow torrent, high sand-carrying capacity flush flood torrent and common flush flood by the techniques. In this paper, the classification indices system and the quantitative rating methods are presented. Based on torrent classification, debris flow torrent hazard zone mapping techniques by which the debris flow disaster early-warning object can be ascertained accurately are identified. The key techniques of building the debris flow disaster neural network (NN)real time forecasting model are given detailed explanations in this paper, including the determination of neural node at the input layer, the output layer and the implicit layer, the construction of knowledge source and the initial weight value and so on. With this technique, the debris flow disaster real-time forecasting neural network model is built according to the rainfall features of the historical debris flow disasters, which includes multiple rain factors such as rainfall of the disaster day, the rainfall of 15 days before the disaster day, the maximal rate of rainfall in one hour and ten minutes. It can forecast the probability, critical rainfall of eruption of the debris flows, through the real-time rainfall monitoring or weather forecasting. Based on the torrent classification and hazard zone mapping, combined with rainfall monitoring in the rainy season and real-time forecasting models, the debris flow disaster early-warning system is built. In this system, the GIS technique, the advanced international software and hardware are applied, which makes the system′s performance steady with good expansibility. The system is a visual information system that serves management and decision-making, which can facilitate timely inspect of the variation of the torrent type and hazardous zone, the torrent management, the early-warning of disasters and the disaster reduction and prevention. 相似文献
707.
708.
Velocity profile of a sand cloud blowing over a gravel surface 总被引:2,自引:0,他引:2
Particle dynamic analyzer (PDA) measurement technology was used to study the turbulent characteristics and the variation with height of the mean horizontal (in the downwind direction) and vertical (in the upward direction) particle velocity of a sand cloud blowing over a gravel surface. The results show that the mean horizontal particle velocity of the cloud increases with height, while the mean vertical velocity decreases with height. The variation of the mean horizontal velocity with height is, to some extent, similar to the wind profile that increases logarithmically with height in the turbulent boundary layer. The variation of the mean vertical velocity with height is much more complex than that of the mean horizontal velocity. The increase of the resultant mean velocity with height can be expressed by a modified power function. Particle turbulence in the downwind direction decreases with height, while that in the vertical direction is complex. For fine sands (0.2–0.3 mm and 0.3–0.4 mm), there is a tendency for the particle turbulence to increase with height. In the very near-surface layer (<4 mm), the movement of blown sand particles is very complex due to the rebound of particles on the bed and the interparticle collisions in the air. Wind starts to accelerate particle movement about 4 mm from the surface. The initial rebound on the bed and the interparticle collisions in the air have a profound effect on particle movement below that height, where particle concentration is very high and wind velocity is very low. 相似文献
709.
试论少数民族地区的生态化旅游开发 总被引:6,自引:7,他引:6
生态化旅游开发是有别于传统的旅游开发的一种可持续开发与发展的理念,它追求的是生态、社会和经济综合效益的最大化,应该成为旅游开发与旅游业发展的主要方向。民族地区的旅游开发具有特定的区域生态特征。其生态化旅游开发的核心问题是旅游环境容量的确定与旅游环境的保护、民族特色与民族文化的弘扬以及注重旅游经济发展过程中旅游业的拉动效应及其依托性之间的关系处理等。 相似文献
710.