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对黑龙江省高校冰球课程发展前景的探讨 被引量:1
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作者 范洪涤 张大春 《当代体育科技》 2017年第1期123-123,125,共2页
我国北方冬季气候的特点是寒冷、冰冻时间长、天然冰资源极为丰富。得天独厚的自然条件成为北方高校冰球课程发展的物质基础。黑龙江省毗邻俄罗斯,将俄罗斯的冰球人材培养模式与黑龙江省高校的冰球人材培养模式相结合,取长补短,将俄罗... 我国北方冬季气候的特点是寒冷、冰冻时间长、天然冰资源极为丰富。得天独厚的自然条件成为北方高校冰球课程发展的物质基础。黑龙江省毗邻俄罗斯,将俄罗斯的冰球人材培养模式与黑龙江省高校的冰球人材培养模式相结合,取长补短,将俄罗斯先进的冰球人才培养经验移入到黑龙江省高校冰球课程的教学中,在黑龙江省高校全面开展冰球课程,使得喜爱冰球运动的人口成倍增长,成为中国冰球的人才库,推动黑龙江省高校的冰球教学再上一个新台阶,成为国家冰球发展战略的重要基地。 展开更多
关键词 北方高校 冰球课程 俄罗斯冰球
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Water Chemistry and Hydrometeorology in a Glacierized Catchment in the Polar Urals,Russia 被引量:2
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作者 STACHNIK Lukasz WALACH Piotr +3 位作者 UZAROWICZ Lukasz YDE Jacob C. TOSHEVA Zornitza WRONSKA-WALACH Dominika 《Journal of Mountain Science》 SCIE CSCD 2014年第5期1097-1111,共15页
This study aims to determine the relationships between local meteorological conditions,proglacial river discharge and biogeochemical processes operating in a periglacial basin located in the Polar Ural mountain range,... This study aims to determine the relationships between local meteorological conditions,proglacial river discharge and biogeochemical processes operating in a periglacial basin located in the Polar Ural mountain range, Russia. Fieldwork was conducted in the catchment of Obruchev Glacier(13 km2) during the summer peak flow period in 2008. River discharge was dominated by snowmelt and changed from 3300 l s-1 to less than 1000 l s-1. The mean daily air temperatures of stations situated in the mountain tundra and near Obruchev Glacier from July 11 th to August 1st 2008 were 14.4°C and 10.3°C, respectively. The glacial river had low total dissolved solids varying from 4.5 to 9 mg l-1 and coefficients of correlation between Na+ and Cl-, K+ and Cl-, as well as NH4+ and Cl- were 0.94, 0.90 and 0.84, respectively. Rainfall events affected the snowmelt initiation and provided an essential part of the discharge during the intense snowmelt period, which occurred from July 11 th to July 18 th 2008. Data showed that Na+ and K+ in the surface water derived from snowmelt rather than chemical weathering of silicates. Also, it was obtained that NO3- derived from the melting snowpack, whereas ammonification occurring under the snowpacks was the primary source for NH4+. 展开更多
关键词 Polar Urals River discharge Nitrate Chemical weathering Periglacial basin Glacier
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