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国家自然科学基金(41071042)

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相关作者:马颖钊张艳林高海峰翟建青张寅生更多>>
相关机构:中国气象局国家气候中心中国科学院更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划中国科学院战略性先导科技专项更多>>
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青藏高原坡面尺度冻融循环与水热条件空间分布被引量:13
2015年
冻土的广泛分布使得青藏高原地表冻融循环与水热条件成为地球科学系统研究的关键之一.高原复杂的下垫面条件导致了冻融循环与水热交换显著的空间非均一性,而坡面尺度是认识地表过程空间变化的基础.本文基于青藏高原地表冻融循环与水热交换空间非均一性研究成果的回顾,利用安多地区近期的观测、模拟成果揭示了该领域的最新进展:首先评价了探地雷达在冻融循环与土壤水热空间变化研究的适用性;其次利用多元手段,显示了冻融循环与土壤水分坡面尺度的空间非均一性.另外利用冻土水热模型的敏感性试验发现:地表升温背景下,冻融过程与土壤水分在不同时期、不同深度、不同坡面的响应均有所不同,升温引起两个坡面冻结周期和速率变化明显.而且升温幅度越大,土壤水分的响应越明显,表层土壤水分的相对变化更为剧烈;对坡面而言,北坡的响应更为显著.
张寅生马颖钊张艳林高海峰翟建青
关键词:坡面尺度冻融循环土壤水热状况探地雷达青藏高原
Climatic changes have led to significant expansion of endorheic lakes in Xizang (Tibet) since 1995被引量:3
2011年
Robust climate warming has led to significant expansion of lakes in the central Tibetan Plateau. Using remote sensing data, our quantitative analysis indicates that Siling Co, a saline lake in a characteristic endorheic basin in the central region of the Plateau, has expanded more than 600 km2 in area since 1976. Particularly since 1995, the lake has significantly expanded in response to increasing precipitation, decreasing water surface evaporation caused by weaker winds and less solar radiation, and increased glacier meltwater draining to the lake. Glacier-lake interactions are important in governing lake expansion and are also part of a feedback loop that influences the local climate. Worsening climatic conditions (decreased precipitation and increased temperatures) that could have caused the lake to shrink during 1976-1994 were offset by increasing glacier meltwater feeding the lake, which made the lake nearly stable. We demonstrate that this pattern changed during 1995-2009, when glacier meltwater actually decreased but participation runoff increased and evaporation decreased, leading to expansion of the lake. If climatic conditions became suitable for further lake development, which would be indicated by expansion in lake area, glacier meltwater could be saved in a stable reservoir.
YinSheng ZhangTanDong YaoYingZhao Ma
关键词:湖泊萎缩青藏高原中部冰川融水
Variability of atmospheric freezing level height derived from radiosonde data in China during 1958-2005 and its impact to cryosphere changes
2011年
Atmospheric air temperature data from 92 stations in China's radiosonde network were used to analyze changes in the freezing level height (FLH), glacier snow line, and ice edge from 1958-2005 (48 years) and to examine the impact of these changes on the cryosphere. In general, the FLH, glacier snow line, and ice edge exhibited latitudinal zonation, declining from south to north. Trends in the FLH, glacier snow line, and ice edge showed spatial heterogeneity during the study period, with prevailing upward trends. Temporally, the FLH, glacier snow line, and ice edge trends differed on various time scales.
YanJun GuoYinSheng Zhang
关键词:探空数据大气温度冰冻圈
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