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黄河特性的水文测船维修建造工艺探索
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作者 曲耀宗 刘建伟 侯小彬 《河南水利与南水北调》 2011年第2期15-15,共1页
黄河下游水文测验的主要设备是水文测船,因黄河河道多泥沙,多浅滩,宽浅散乱,游荡不定等特点,在其他水域航行自如的船舶在黄河上都难以适应。几十年来,一代代黄河水文人在不断探索、不断改进的基础上,摸索出一条适合黄河特性的水文测船... 黄河下游水文测验的主要设备是水文测船,因黄河河道多泥沙,多浅滩,宽浅散乱,游荡不定等特点,在其他水域航行自如的船舶在黄河上都难以适应。几十年来,一代代黄河水文人在不断探索、不断改进的基础上,摸索出一条适合黄河特性的水文测船维修和建造之路,为水文测验的顺利完成奠定良好的基础。 展开更多
关键词 水文测船 修建 工艺 探索 黄河特性
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Effects of the hummock-depression microhabitat on plant communities of alpine marshy meadows in the Yellow River Source Zone,China 被引量:1
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作者 Guiling Wu Jay Gao +2 位作者 Weiyou Ou Jizhong Wan Xilai Li 《Journal of Plant Ecology》 SCIE CSCD 2022年第1期111-128,共18页
Our objectives are to examine the effects of hummock-depression spatial heterogeneity on plant communities and soil properties,and to understand the process of maintaining and adjusting microtopography-mediated hydrol... Our objectives are to examine the effects of hummock-depression spatial heterogeneity on plant communities and soil properties,and to understand the process of maintaining and adjusting microtopography-mediated hydrological inputs and their spatial fluctuations that produce obvious microhabitats.We set up 36 plots(1 m×1 m)and sampled 45 plant and 225 soil samples in flooded(FH)and non-flooded hummocks(NFH)and depressions of the marshy,and the surrounding non-wetland meadows as well as in the Yellow River Source Zone,west China.We evaluated whether the alpine marshy wetland has a fertile island effect by the comparison method.Our results show that hummock presence can increase the spatial heterogeneity of the microhabitat and promote the plant diversity and soil fertility of the Kobresia tibetica community.Plant height,coverage,above-ground biomass,species richness and diversity were significantly higher in the FH and NFH microhabitat than in the areas between hummocks and surrounding non-wetland meadows.Compared with broad alpine meadows,the hummock-depression complex provided a microhabitat favorable to the growth of Cyperaceae.In the 0-50 cm soil layer,the closer the soil layer was to the ground surface,the higher its soil organic carbon and total nitrogen contents.Thus,in deeper layers,the gap between soil nutrients in wetland hummock-depression microhabitat and in the surrounding alpine meadows becomes smaller.Hence,the wetland hummock-depression microhabitat formed a fertile island pattern.Therefore,these results contribute toward improving our understanding of ecosystem restoration in alpine marshy meadows. 展开更多
关键词 alpine marshy meadow hummock-depression microhabitat plant properties soil properties Yellow River Source Zone
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