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结构增强扩散在地震资料构造解释中的应用 被引量:1
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作者 钟勇 王山山 陈磊 《成都理工大学学报(自然科学版)》 CAS CSCD 北大核心 2011年第2期121-125,共5页
为了提高地震资料构造解释的效率和准确性,提出结构增强扩散方法提高地震资料质量。将地震资料转换为地震图像,通过提取地震图像结构张量,使用双边滤波器求取梯度值,结构增强扩散方法根据地震图像纹理不连续的方向和强度信息自动判断阈... 为了提高地震资料构造解释的效率和准确性,提出结构增强扩散方法提高地震资料质量。将地震资料转换为地震图像,通过提取地震图像结构张量,使用双边滤波器求取梯度值,结构增强扩散方法根据地震图像纹理不连续的方向和强度信息自动判断阈值,实现在断点处保持不连续特征的同时,增强地震同相轴的连续性,从而提高地震图像横向分辨率和突出地震资料中的构造特征。应用结果表明,结构增强扩散处理能够提高地震图像复杂构造的显示效果,有助于提高构造解释精确度,并且能够提高计算机自动解释的合理性。 展开更多
关键词 地震资料 结构增强扩散 各向异性扩散 双边滤波
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Hetero-metallic lithiophilic sites to assist sustained diffusion-deposition of Li^(+) toward stable lithium metal anodes
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作者 HUANG Shao-zhen HE Pan +2 位作者 YU Hua-ming LI Hui-miao CHEN Li-bao 《Journal of Central South University》 CSCD 2024年第12期4437-4448,共12页
Lithium metal stands out as an exceptionally promising anode material,boasting an extraordinarily high theoretical capacity and impressive energy density.Despite these advantageous characters,the issues of dendrite fo... Lithium metal stands out as an exceptionally promising anode material,boasting an extraordinarily high theoretical capacity and impressive energy density.Despite these advantageous characters,the issues of dendrite formation and volume expansion of lithium metal anodes lead to performance decay and safety concerns,significantly impeding their advancement towards widespread commercial viability.Herein,a lithium-rich Li-B-In composite anode with abundant lithophilic sites and outstanding structural stability is reported to address the mentioned challenges.The evenly distributed Li-In alloy in the bulk phase of anodes act as mixed ion/electron conductors and nucleation sites,facilitating accelerated Li ions transport dynamics and suppressing lithium dendrite formation.Additionally,these micron-sized Li-In particles in LiB fibers framework can enhance overall structural integrity and provide sufficient interior space to accommodate the volume changes during cycling.The electrochemical performance of Li-B-In composite anode exhibits long-term cyclability,superior rate performance and high-capacity retention.This work confirms that the synergy between a 3 D skeleton and hetero-metallic lithiophilic sites can achieve stable and durable lithium metal anodes,offering innovative insights for the practical deployment of lithium metal batteries. 展开更多
关键词 lithium metal anodes lithiophilic sites intermetallic phase enhanced structural stability fast ion diffusion
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