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P波入射分界面叠加区质点运动形成机制与峰值规律 被引量:1
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作者 何卫平 李小军 +1 位作者 杜修力 姚惠芹 《振动与冲击》 EI CSCD 北大核心 2023年第18期81-87,163,共8页
该文章针对平面P波入射分界面条件下质点运动的形成机制和空间变化规律开展研究,以期为地震动的时域解释提供理论基础和规律性认知。依据地震波传播特征给出分界面附近的空间域划分和叠加区边界,然后通过波函数叠加给出分界面两侧空间... 该文章针对平面P波入射分界面条件下质点运动的形成机制和空间变化规律开展研究,以期为地震动的时域解释提供理论基础和规律性认知。依据地震波传播特征给出分界面附近的空间域划分和叠加区边界,然后通过波函数叠加给出分界面两侧空间质点运动的解析表达,进而阐明不同空间域内质点运动的成分序列和峰值分布规律。研究结果显示,分界面近区为叠加区,远区为分离区。质点运动的成分序列随空间域产生变化,在叠加区内包含无波、单波、双波和三波贡献时段,在分离区内包含无波和单波贡献时段。分界面附近质点运动峰值分布包含峰型分布和谷型分布两类,前者由同号地震波分量叠加引起,后者由异号地震波分量叠加引起,在算例中分界面附近质点运动峰值的最大差异为2.589。 展开更多
关键词 地震动形成机制 分界面 平面P波 地震动成分序列 峰型分布 谷型分布
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Sodium and Potassium Absorption and Distribution in Relation to Growth and Internal Potassium Use Efficiency of K-efficient and -inefficient rice genotypes 被引量:5
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作者 LIU JIANXIANG YANG XIAOE +1 位作者 NI WUZHONG and YANG YUAI College of Environmental and Resource Sciences, Zhejiang University, Hangzhou, 310029 (China) 《Pedosphere》 SCIE CAS CSCD 2001年第3期235-242,共8页
A pot experiment with two rice (Oriza sativa L.) genotypes differing in internal potassium use efficiency (IKUE) was conducted under different sodium (Na) and potassium (K) levels. Adding NaCl at a proper level enhanc... A pot experiment with two rice (Oriza sativa L.) genotypes differing in internal potassium use efficiency (IKUE) was conducted under different sodium (Na) and potassium (K) levels. Adding NaCl at a proper level enhanced rice vegetative growth and increased grain yield and IKUE under low potassium. Addition of higher rate of NaCl had a negative effect on the growth of the K-efficient rice genotype, but did not for the K-inefficient genotype. Under low-K stress, higher NaCl decreased IKUE of the K-efficient rice genotype but increased IKUE for the K-inefficient genotype. At tillering stage and under low-K stress, adding NaCl increased K and Na contents and decreased the ratio of K/Na for both genotypes. At harvesting stage under low-K stress, adding NaCl increased K and Na contents and K/Na ratio for the K-efficient genotype but decreased the K/Na ratio for the K-inefficient genotype. The accumulated Na was mostly deposited in the roots and sheaths. At tillering stage, the K and Na contents and the K/Na ratios in different parts for both genotypes decreased in the following sequence: K+ in sheaths > K+ in blades > K+ in roots; Na+ in roots > Na+ in sheaths > Na+ in blades; and K/Na in sheaths 》 K/Na in roots. The K-efficient genotype had a lower K/Na ratio in roots and sheaths than the K-inefficient genotype under low-K stress. At harvesting stage, K and Na contents in grains were not affected, whereas K/Na ratio in the rice straws was increased for the K-efficient genotype but decreased for the K-inefficient genotype by Na addition. However, this was not the case under K sufficient condition. 展开更多
关键词 DISTRIBUTION internal K use efficiency (IKUE) K Na rice genotypes
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