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Variation of soil-plant-atmosphere continuum stable isotope and water source in Qinghai spruce forest of the eastern Qilian Mountains 被引量:2
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作者 ZHOU Jun-ju WANG Xue +9 位作者 MA Luo LUO Chu-yu TANG Hai-tao GUO Zhao-nan CHEN Jia-wei SHI Su-han SHI Wei WEI Wei ZHANG Dong-xia LIU Chun-fang 《Journal of Mountain Science》 SCIE CSCD 2023年第2期355-366,共12页
Understanding the hydrogen and oxygen stable isotope composition and characteristics of different water bodies in soil-plant-atmosphere continuum is of significance for revealing regional hydrological processes and wa... Understanding the hydrogen and oxygen stable isotope composition and characteristics of different water bodies in soil-plant-atmosphere continuum is of significance for revealing regional hydrological processes and water cycle mechanisms.In this study,we analyzed the stable isotopic composition,relationship and indicative significance of precipitation,soil water(0~100 cm depth)and xylem water of Qinghai spruce(Picea crassifolia)forest in the eastern Qilian Mountains,and explored the circulation process among different water bodies.The results show that the stable isotopes of precipitation vary greatly during the entire observation period.The values ofδ2H andδ^(18)O in the precipitation in the warm season are richer than those in the cold season,and the slope and intercept of local meteoric water line(LMWL,δ2H=6.79δ18O+7.13)are both smaller than global meteoric water line(GMWL,δ2H=8.17δ18O+10.56).The stable isotopes of soil water at different depths underwent different degrees of evaporative fractionation,and theδ18O andδ2H of shallow soil water varied greatly,while the deep soil water tended to be similar.The topsoil(0~10 cm)can respond quickly to precipitation,and the response of the deep soil has a time lag.In the whole growing season,0~30 cm and 60~100 cm soil water are the main water sources of Qinghai spruce.The water source of Qinghai spruce was from all soil layers in May and September,mainly from the shallow soil layer(0~30 cm)in August and October,and mainly from the deep soil layer(60~100 cm)in June and July. 展开更多
关键词 Stable hydrogen isotope Stable oxygen isotope soil-plant-atmosphere continuum spac Plant water use IsoSource model
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黑河下游典型植被下垫面与大气间能量传输模拟研究 被引量:6
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作者 冯起 张艳武 +1 位作者 司建华 席海洋 《中国沙漠》 CSCD 北大核心 2008年第6期1145-1150,共6页
在分析过去地-气间相互作用的物理过程、研究进展基础上,探讨了土壤、植被、大气系统中水分与能量的传输过程在模型中不同的计算方法。同时对不同计算方法进行对比,确定了分析土壤、植被、大气系统中水分和能量传输方法的优缺点。利用... 在分析过去地-气间相互作用的物理过程、研究进展基础上,探讨了土壤、植被、大气系统中水分与能量的传输过程在模型中不同的计算方法。同时对不同计算方法进行对比,确定了分析土壤、植被、大气系统中水分和能量传输方法的优缺点。利用黑河下游额济纳地区绿洲试验区2003年9月的大气资料作为陆面模式的强迫场,研究陆面过程模式(LSM)在极端干旱地区的模拟能力。模拟结果表明,在观测资料的强迫下,LSM能够较好地模拟出地表特征量的变化趋势。根据实际情况,定义额济纳地区绿洲的植被覆盖率为0.7,叶冠高度为1.5 m,位移高度为0.64 h,Karman常数取0.4。通过对比试验发现,采用LSM模型模拟的空气温度和地面蒸发比实际蒸发少,但地表潜热通量、辐射和土壤热通量的模拟结果与实测值的比较吻合。如果地表和植被的参数选择较好,采用LSM模型模拟本地区的陆面过程将有较好的结果。 展开更多
关键词 黑河下游 土壤-植被-大气系统 水分和能量传输 试验模拟
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