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天然沸石对松嫩平原黑钙土理化性质和保水能力的影响 被引量:9
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作者 马媛媛 戴显庆 +2 位作者 彭绍好 杨光 冀晓东 《北京林业大学学报》 CAS CSCD 北大核心 2018年第2期51-57,共7页
【目的】通过研究天然沸石掺配量对于松嫩平原黑钙土理化性质和土壤水分特征曲线的影响,来研究天然沸石改良黑钙土的保水能力的效果,为改良土壤保水性提供理论参考。【方法】采用天然沸石改良土壤,进行60 d花盆培养,环刀法测量土壤密度... 【目的】通过研究天然沸石掺配量对于松嫩平原黑钙土理化性质和土壤水分特征曲线的影响,来研究天然沸石改良黑钙土的保水能力的效果,为改良土壤保水性提供理论参考。【方法】采用天然沸石改良土壤,进行60 d花盆培养,环刀法测量土壤密度,公式法计算土壤总孔隙度、毛管孔隙度、通气孔隙度。离心机法测定土壤水分特征曲线。【结果】天然沸石改良黑钙土试验中,土壤密度随沸石掺配量的增加而增大,呈正相关关系,当沸石掺配量为10%时,土壤密度增加最为显著;毛管孔隙度和总孔隙度均随掺配量的增加而减小,呈负相关关系,当沸石掺配量为10%时,土壤的通气孔隙度为最大。各掺配量下土壤的持水能力结果为:20%天然沸石(NZ)>15%NZ≈10%NZ>5%NZ>CK。各组土壤的水分特征曲线均能用Gardner模型拟合。Gardner模型方程的拟合系数a、b均随持水能力增强而减小,呈负相关关系;随饱和含水率升高而增大,呈正相关关系。将饱和含水率和拟合系数a进行拟合,结果显示决定系数(R2)为0.941 8。【结论】在进行土壤持水能力改良时,利用10%天然沸石掺配量比较经济可行。土壤饱和含水率高,不一定水分特征曲线初始水平就高。各项试验结果说明,利用天然沸石可以有效改良砂壤黑钙土的保水能力,为黑土区土壤改良提供试验和理论参考。 展开更多
关键词 黑钙土 土壤改良 保水性 天然沸石
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Studying the mechanical properties of the soil-root interface using the pullout test method 被引量:14
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作者 JI Xiao-dong CONG Xu +2 位作者 dai xian-qing ZHANG Ao CHEN Li-hua 《Journal of Mountain Science》 SCIE CSCD 2018年第4期882-893,共12页
It is important to quantify the effect of the root diameter, the embedment length of the root and load speed on the soil-root interface mechanical properties for studying the root anchorage. The soilroot interface mec... It is important to quantify the effect of the root diameter, the embedment length of the root and load speed on the soil-root interface mechanical properties for studying the root anchorage. The soilroot interface mechanical properties can be obtained through the pullout force and root slippage curve(F-S curve). About 120 Pinus tabulaeformis single roots whose diameters ranged from 1 mm to 10 mm divided into 6 groups based on different root embedment length(50 mm, 100 mm and 150 mm) and different load velocity(10 mm·min^(-1), 50 mm·min^(-1), 100 mm·min^(-1) and 300 mm·min^(-1)) were investigated using the pullout method. This study aims to explore the mechanical properties of the soil-root interface in the real conditions using the pullout test method. The results showed two kinds of pullout test failure modes during the experimental process: breakage failure and pullout failure. The results showed that the roots were easier to be broken when the root diameter was smaller or the loading speed was larger. The relationship between the maximum anchorage force and root diameter was linear and the linearly dependent coefficient(R^2) was larger than 0.85. The anchorage force increased with the root embedment length. An increase of 10%^(-1)5% for the maximumanchorage force was found when load speed increased from 10 to 300 mm.min^(-1). The mean peak slippage of the root was from 13.81 to 35.79 mm when the load velocity varied from 10 to 300 mm.min^(-1). The study will be helpful for the design of slopes reinforced by vegetation and in predicting risk of uprooting of trees, and will have practical benefits for understanding the mechanism of landslide. 展开更多
关键词 机械性质 测试方法 接口 土壤 学习 滑动曲线 PINUS 公里
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