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国家自然科学基金(40225001)

作品数:4 被引量:39H指数:3
相关作者:张淑娟张明义李双洋赖远明更多>>
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发文基金:国家自然科学基金中国科学院知识创新工程重要方向项目中国科学院知识创新工程更多>>
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Symbiosis of Marshes and Permafrost in Da and Xiao Hinggan Mountains in Northeastern China被引量:14
2008年
Recently, the degradation of permafrost and marsh environments in the Da and Xiao Hinggan Mountains has become a great concern as more human activities and pronounced climate warming were observed during the past 30 years and projected for the near future. The distr/bution patterns and development mechanisms of the permafrost and marshes have been examined both in theories and in field observations, in order to better understand the symbiosis of permafrost and marshes. The permafrost and marshes in the Da and Xiao Hinggan Mountains display discernible zonations in latitude and elevation. The marsh vegetation canopy, litter and peat soil have good thermal insulation properties for the underlying permafrost, resulting in a thermal offset of 3 ℃ to 4℃ and subsequently suppressing soil temperature. In addition, the much higher thermal conductivity of frozen and ice-rich peat in the active layer is conducive to the development or in favor of the protection of permafrost due to the semi-conductor properties of the soils overlying the permafrost. On the other hand, because permafrost is almost impervious, the osmosis of water in marsh soils can be effectively reduced, timely providing water supplies for helophytes growth or germination in spring. In the Da and Xiao Hinggan Mountains, the permafrost degradation has been accelerating due to the marked climate warming, ever increasing human activities, and the resultant eco-environmental changes. Since the permafrost and marsh environments are symbiotic and interdependent, they need to be managed or protected in a well-coordinated and integrated way.
JIN HuijunSUN GuangyouYU ShaopengJIN RuiHE Ruixia
关键词:PERMAFROSTSYMBIOSIS
Ground-temperature controlling effects of duct-ventilated railway embankment in permafrost regions被引量:16
2004年
Based on observed data from field-testing embankment of the Qinghai-Tibet Railway, ground-temperature controlling effect of duct-ventilated embankment is studied in this paper.The results show that ventilation ducts can effectively cool the soils surrounding the ducts of the embankment, and the heat budget of the ambient soils in a year shows as heat release. Temperature status of the permafrost below the embankment with ducts buried in the relatively high position is similar to that of the common embankment. The permafrost processes warming all along in the two freezing-thawing cycles when the embankment was constructed. However, the temperature of the frozen soils below the embankment, in which the ducts buried in the relatively low position, rises a little in the initial stage. After that, it cools down gradually. At the same time,ventilation ducts can effectively reduce the thermal disturbance caused by the filled soils. The frozen soils below the common embankment and that with high-posited ducts absorb heat all along in the initial two cycles. While the soils below the embankment with low-posited ducts begin to release heat in the second cycle. This phenomenon proves that the ventilation embankment with low-posited ducts shows efficient temperature-controlling effect. Such embankment can actively cool the subgrade soils and therefore keeps the roadbed thermally stable.
NIU FujunCHENG GuodongYU Qihao
关键词:PERMAFROST
青藏铁路封闭抛石路基流场与温度场特性数值分析被引量:1
2006年
铁路道碴层和抛石铺层可以看作多孔介质,其内部流体的对流换热为多孔介质的传热传质问题,在多风的青藏高原,抛石路基结构往往会因为抛石层表面被风沙、积雪等封堵,在石头层内形成一个封闭系统.针对青藏高原特殊的气候以及地质条件,基于多孔介质对流传热理论,对封闭抛石路基这一特殊结构的流场和温度场特性进行了数值研究与分析,结果表明:抛石路基在封闭的特殊条件下,内部空气运动方式为自然对流,且仍具有明显的冷却降温作用,这可为多年冻土区抛石路基的长期使用与维护提供参考;但其降温效果及对流强度随着抛石层上部填土厚度的增大而削弱,这应引起设计与施工部门的足够重视。
张明义赖远明李双洋张淑娟
关键词:流场温度场青藏铁路
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