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几个树种的林冠降雨特征 被引量:40
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作者 王彦辉 《林业科学》 EI CAS CSCD 北大核心 2001年第4期2-9,共8页
本文从机制和数量关系上研究了毛竹、杉木和刺槐人工林的林冠对降雨雨谱和雨滴动能的影响 ,这是进一步深入研究森林的水土保持和水文效益的基础。结果表明 ,林冠降雨的雨滴直径 (D ,mm)大小分布即雨谱基本不受空旷地降雨类型和强度的影... 本文从机制和数量关系上研究了毛竹、杉木和刺槐人工林的林冠对降雨雨谱和雨滴动能的影响 ,这是进一步深入研究森林的水土保持和水文效益的基础。结果表明 ,林冠降雨的雨滴直径 (D ,mm)大小分布即雨谱基本不受空旷地降雨类型和强度的影响 ,表现出相当稳定的特征。当采用F =1-exp(- (10Dα ) n)表示林冠降雨雨谱时 ,毛竹、杉木和刺槐的α值分别为 2 7718、2 5 939、2 5 112 ;n值分别为 1 75 93、1 9175、2 6 12 6。林冠降雨单位水体雨滴动能也基本不受林外降雨类型和强度影响。当降落高度足够大从而所有雨滴都能达到终点速度时 ,毛竹、杉木、刺槐的林冠降雨单位水体雨滴潜在动能为 2 4 16 3J·m- 2 mm- 1 、2 3 2 14J·m- 2 mm- 1 和2 3 713J·m- 2 mm- 1 ,表现为所研究 3个树种之间的差别很小。本研究建立了依据给定降落高度 (H ,m)计算这3个树种林冠降雨单位水体雨滴动能的模型 ,毛竹为ec=2 4 12 9[1-exp(0 .0 0 2 3H2 - 0 .32 5 9H) ],杉木为ec=2 3 2 14[1-exp(0 .0 0 2 5H2 - 0 .34 0 9H) ],刺槐为ec=2 3 713[1-exp(0 .0 0 15H2 - 0 .34 6 7H) ]。林冠降雨单位水体雨滴动能随降落高度降低而减小的程度表现为在 0~ 5m范围内最强烈 ;在 5~ 10m范围内较明显 ;在 10m以上时则不再很明显。文中还确? 展开更多
关键词 降雨功能 林冠 森林水土保持 森林水文效益
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Above-and belowground trait linkages of dominant species shape responses of alpine steppe composition to precipitation changes in the Tibetan Plateau 被引量:2
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作者 Zhi Zheng Yue Zhang +3 位作者 Shihu Zhang Qun Ma Dajie Gong Guoying Zhou 《Journal of Plant Ecology》 SCIE CSCD 2021年第4期569-579,共11页
Aims Human activities and global changes have led to alterations in global and regional precipitation regimes.Despite extensive studies on the effects of changes in precipitation regimes on plant community composition... Aims Human activities and global changes have led to alterations in global and regional precipitation regimes.Despite extensive studies on the effects of changes in precipitation regimes on plant community composition across different types of grassland worldwide,few studies have specifically focused on the effects of precipitation changes on high-altitude alpine steppe at community and plant species levels in the Tibetan Plateau.Methods We investigated the effects of growing-season precipitation changes(reduced precipitation by 50%,ambient precipitation,enhanced precipitation by 50%)for 6 years on plant community composition in an alpine steppe of the Tibetan Plateau by linking above-to belowground traits of dominant species.Important Findings We found that reduced precipitation shifted community composition from dominance by bunchgrass(primarily Stipa purpurea)to dominance by rhizomatous grass(primarily Leymus secalinus).Roots and leaf traits of L.secalinus and S.purpurea differed in their responses to reduced precipitation.Reduced precipitation enhanced root vertical length and carbon(C)allocation to deep soil layers,and decreased the leaf width in L.secalinus,but it did not change the traits in S.purpurea.Moreover,reduced precipitation significantly enhanced rhizome biomass,length,diameter and adventitious root at the rhizome nodes in L.secalinus.These changes in traits may render rhizomatous grass greater competitive during drought stress.Therefore,our findings highlight important roles of above-and belowground traits of dominant species in plant community composition of alpine steppe under precipitation change. 展开更多
关键词 precipitation change functional group dominant species Stipa purpurea Leymus secalinus soil moisture plant traits alpine steppe Tibetan Plateau
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