首页> 外文会议>International Conference on Bioinformatics and Biomedical Engineering >Stability of Root-soil-complexes in Riverbanks with Different Vegetation Covers in Three Gorges Reservoir Region
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Stability of Root-soil-complexes in Riverbanks with Different Vegetation Covers in Three Gorges Reservoir Region

机译:三峡库区不同植被覆盖的河岸根土复合物的稳定性

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Vegetation plays an important role in stabilizing soil and preventing soil erosion of slope. To reveal the stability of root-soil-complexes in riverbanks in WLFZ (water-level-fluctuation zone) of Three Gorges reservoir region, a research was conducted on four types slope, BS (bare slope), GS (slope of grass-herb), SS (slope of shrub) and FS (slope of forest), of similar soil texture and slope angle with different vegetation covers in Ruxi riverbanks. RLD (root length density), SWC (soil water content), FWC (field water capacity), ASS (soil anti-shearing strength) of each 10 cm soil layer in four types riverbank were measured. And the values of soil anti-erodibility andanti-scouribility in the 15 cm soil layer were also measured. The results showed that: (1) The EV_S and EV_e (enhancement value of soil anti-scouribility and of anti-erodibility) of SS were both larger and significantly higher than those of GS and FS while the values of GS andFS were small. (2) The RLD of GS, SS and FS was almost observed in the 30 cm surface soil layer and decreased with soil depth. FS had the highest RLD in every 10 cm soil layer and then the SS. (3) The SWC of BS increased with soil depth, but that of FS decreased with soil depth. The SWC and FWC of SS changed slowly in the 50 cm soil layer, and the FWC of FS and GS decreased with soil depth. The FWC of BS in 10 cm surface soil was the largest and then there was a trend of gradually increasing with soil depth in 20~50 cm layer. (4) The ASS value of GS was lower than those of other three slopes and that of FS had a little changes along the 30cm surface soil layer while it became higher at the 30~40cm soil layer. The ASS mean of the SS was highest at 0~10 cm, 20-30 cm and 40~50 cm soil layer, however, that of BS at the 10~20cm soil layer and that of FS at 30~40 cm soil layer were highest. It indicated that: (1) The soil anti-erosion capability of SS was better than that of FS and GS, and its physical soil properties in 50 cm layer was more stable than that of others; (2) The surface soil of FS, especially 10 cm soil layer, had a better soil water retention; (3) The BS had a low soil stability because of the larger changes over the parameters of all layers, especially in the shallow soil. (4) SS also had a better anti-shearing stability in the 0~30 cm soil layer than GS and FS. In conclusion, this is perhaps better construction of vegetation increases stability riverbank of WLFZ significantly. Shrubs and forest played good roles in binding soil and stabilizing slope, which could improve the ecological effects. And SS riverbank was the best stable One. Thus, in vegetation reconstruction in the WLFZ, more attention should be paid to restoration of shrubs in riverbanks.
机译:植被在稳定土壤,防止边坡水土流失具有重要作用。为了揭示根土复合物在河岸在库区区域的WLFZ(水 - 电平 - 波动区)的稳定性,一个研究是在四种类型的斜率,BS(裸斜率),草草本植物的GS(斜率进行),SS灌木(斜率)和FS(森林的斜率),类似的土壤质地和倾斜角在入席河岸不同植被覆盖物。 RLD(根长度密度)各10 cm土层中四种类型的河堤,SWC(土壤水分含量),FWC(田间持水量),ASS(土壤的抗剪切强度)进行测定。并且还测量了在15 cm土层土壤抗蚀性andanti-抗冲的值。结果表明:(1)SS的EV_S和EV_e​​(土壤抗冲的增强值抗蚀性的和)均大,比那些GS和FS的显著较高,而GS andFS的值小。 (2)GS,SS和FS的RLD几乎在30cm的土壤表层观察和土壤深度减小。 FS必须在每10 cm土层最高RLD,然后SS。 (3)BS的SWC与土壤深度增加,但该FS与土壤深度减小。的SWC和SS的FWC在50 cm土层缓慢改变,并且FS的FWC和GS随土壤深度减小。 BS的于10cm表面土壤的FWC是最大的,然后有在20〜50厘米层用土壤深度逐渐增加的趋势。 (4)GS的ASS值明显高于其他三个倾斜的和较低的FS有沿30厘米表面土壤层有点变化,同时它成为在30〜40cm土层层更高。 SS的平均ASS最高在0〜10厘米,20-30厘米和40〜50厘米的土壤层,然而,在10〜20cm的土壤层和BS中的FS的30〜40厘米的土壤层是最高。它表明:(1)SS的土壤的抗腐蚀能力明显高于FS和GS,和在50厘米层其物理土壤性质的更好的比其他的更稳定; (2)FS的表面土壤,特别是10厘米厚的土层,有一个更好的土壤持水; (3)BS具有低的土壤稳定性,因为超过所有层的参数变化较大,特别是在浅层土壤。 (4)SS也有在0〜30厘米土壤层比GS和FS较好的抗剪切稳定性。总之,这也许是WLFZ的植被稳定性增加河岸显著的更好的建设。灌木和森林中土壤的结合和稳定的斜率,这可以改善生态影响方面起到很好的作用。和SS河岸是最稳定的一个。因此,在WLFZ植被重建,更要注意在河岸灌木的恢复。

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