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| 1 | 巴丹吉林沙漠腹地湖泊水面蒸发模拟的特殊性显示文摘巴丹吉林沙漠腹地的湖泊形成机理一直存在较大争论。其中,湖泊蒸发估算的不确定性可能是导致这一争论的重要原因。采用沙漠腹地的气象观测数据,分析了沙漠腹地湖泊蒸发估算所具有的特殊性,亦即沙漠腹地与外围的风速差异、腹地湖泊'冷岛效应'和'盐度效应'。具体而言,腹地风速较外围风速小,可引起传统的彭曼模型估算的蒸发偏大,腹地湖泊的冷岛效应则使平流项在湖泊能量平衡过程中不可忽视,腹地湖泊的盐度效应使得其蒸发速率要小于淡水蒸发。因此,开展系统的定位观测是准确获取湖巴丹吉林沙漠腹地泊蒸发的一个合理途径,并有助于揭示沙漠腹地湖泊的形成机理。 | 马宁 王乃昂 | 2016 | 干旱区研究2016,33,6: | 8 |
| 2 | 巴丹吉林沙漠沙山表层径流的发现及其指示意义显示文摘在全球高差最大的巴丹吉林沙漠发现了沙山斜坡上的表层径流物理沉积及化学沉积、沙山洼地罕见的地表超渗径流和沙山底部泉水溪流.根据电镜观察、能谱分析、入渗实验、含水量测定和粒度分析等资料,研究了表层径流化学沉积物的矿物和化学组成、物理沉积物的粒度组成、沙山区水分平衡、大气降水对地下水与湖水的补给条件和补给机制.超渗径流与表层径流的存在表明,该区存在能够为地下水提供补给来源的较强有效降雨过程.各种表层径流物理沉积与化学沉积、泉水溪流、超渗径流与含量为3~6%的重力水等8项科学证据十分可靠地从深层次上证明,该区降水通过入渗达到了沙山的底部,已经对地下水构成了补给.新生方解石和石膏等径流化学沉积物和灰黑色物理沉积物以及径流沉积扇形地演化的阶段性均指示该区大气降水对地下水的补给不是偶然的降水事件造成的,具有长期补给性.细粒层的隔水性是该区地下径流出露于地表的原因.沙山区具有一定有效降水能够提供水分补给源、沙层的高入渗率能够将大气降水快速转化沙层水、植被稀少蒸腾量少、沙层受蒸发影响深度小降低了蒸发对水分的消耗、沙层含有运移较快的重力水是该区水分出现正平衡和大气降水能够补给地下水的5个因素,这5个因素的共同作用构成了该区大气降水向地下水的补给机制,为地下水和湖泊提供了水分补给来源.本文对国内外沙漠区水循环、地下水补给条件、补给动力和补给机制的研究具有重要参考意义. | 赵景波 马延东 罗小庆 岳大鹏 邵天杰 董治宝 | 2017 | 中国科学:地球科学2017,47,4: | 7 |
| 3 | The discovery of surface runoff in the megadunes of Badain Jaran Desert,China,and its significance显示文摘The Badain Jaran Desert exhibits the greatest difference in altitude of all of the world's deserts.On the slopes of megadunes in the desert,there are physical and chemical deposits produced by surface runoff.In addition,we have observed rarely-seen infiltration-excess surface runoff in the megadune depressions as well as spring streams at the base of megadunes.We used electron microscopy,energy spectrum analysis,infiltration experiments,moisture content determinations and grain-size analysis to study the mineral and chemical composition of the runoff precipitates,and grain-size of the deposits associated with the runoff,together with the hydrological balance in the megadune area,and the atmospheric precipitation mechanism responsible for groundwater recharge and for supplying water to lakes.The observations of shallow runoff and infiltration-excess surface runoff indicate the occurrence of strong and effective precipitation in summer,which would provide an important source for groundwater recharge.Several lines of evidence,such as the physical and chemical deposits resulting from shallow subsurface runoff,spring streams,infiltration-excess runoff,and gravity capillary water with a moisture content of 3-6%,demonstrate that precipitation reaches the base of the megadunes through infiltration and subsequently becomes groundwater.The chemical deposits,such as newly-formed calcite and gypsum,and gray-black physical deposits,as well as different stages in the development of fan-shaped landforms resulting from shallow subsurface runoff,indicate that groundwater recharge in the area is the result of long-term precipitation,rather than intermittent individual major rainfall events.Fine sand layers with a low infiltration capacity lead to subsurface runoff emerging at the ground surface.Five factors play an important role in maintaining a positive water balance and in replenishing groundwater via rainfall:effective rainfall as a water source,the high infiltration capacity of the sands enabling rainfall to rapidly become capillary water in the dunes,low evapotranspiration rates due to the sparse vegetation,the fact that the depth of the sand layer influenced by evaporation is shallow enough to maximize the deep infiltration of rainfall,and rapidly-moving gravity capillary water in the sandy dunes.These five factors together constitute a mechanism for groundwater recharge from rainfall,and explain the origin of the groundwater and lakes in the area.Our findings represent a significant advance in research on the hydrological cycle,including groundwater recharge conditions and recharge mechanisms,in this desert region. | ZHAO JingBo MA YanDong LUO XiaoQing YUE DaPeng SHAO TianJie DONG ZhiBao | 2017 | Science China Earth Sciences2017,60,4: | 3 |
| 4 | Remote Sensing Monitoring of Surface Characteristics in the Badain Jaran, Tengger, and Ulan Buh Deserts of China显示文摘Deserts and sandy land in northern China are very susceptible to sandy desertification and are the main source of sand-dust storms of Asian dust. However, because of the complex factors involved, descriptions of the relationship between sandy desertification and surface characteristics in these regions are lacking. We monitored the surface characteristics and their changes in time using information about soil, vegetation, and landforms in the Badain Jaran Desert(BJD), Tengger Desert(TD), and Ulan Buh Desert(UBD) in the northern China. The monitoring was done using tasseled cap angle(TCA), disturbance index(DI), and topsoil grain size index(TGSI) from Moderate Resolution Imaging Spectroradiometer(MODIS) images combined with a decision tree classification. Results showed that the TD had higher topsoil fine sand content, and the ratio of non-vegetated to vegetated areas was similar with that in the UBD. Northeast-southwest coarse sand dunes with thin interdune(NECTI) dominated the BD, fine sand dunes(FSD) dominated the TD, and a combination of northeast-southwest coarse sand dunes with wide interdune(NECWI) and northwest-southeast coarse sand dunes with wide interdune(NWCWI) dominated the UBD. From 2000 to 2015, in the BJD the area of the NECTI, non-sand dune(Non) and potential sand sources(PSS) increased, whereas the area of the NECWI, FSD and NWCWI decreased, indicating a improve process in the BJD. In the TD, the area covered by Non increased, whereas the area covered by PSS, NECWI, NECTI, FSD, and NWCWI decreased from 2000 to 2015. The area covered by the various surface characteristic types fluctuated annually in the UBD from 2000 to 2015. Changes in surface characteristics reflect the combined effects of natural conditions and human activity. The findings of our study will assist scientists and policy makers in proposing different management techniques to combat sandy desertification for the different surface characteristics of these regions. | LIU Qingsheng LIU Gaohuan HUANG Chong LI He | 2019 | Chinese Geographical Science2019,29,1: | 2 |