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大倾角特厚煤层开采地表沉降规律数值模拟研究 被引量:1
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作者 叶子昂 黄瑞萱 +2 位作者 师晓达 李新宇 陆泽龙 《煤炭技术》 CAS 北大核心 2023年第10期40-45,共6页
为寻求大倾角煤层开采地表沉降规律,利用FLAC^(3D)数值模拟软件,对乌东煤矿煤层进行了沉降模拟,针对不同倾角条件下的地表沉降范围、地表沉降量进行了分析。并结合Excel软件分析了煤层倾角与开采沉降量之间相关性,建立了煤层倾角与煤层... 为寻求大倾角煤层开采地表沉降规律,利用FLAC^(3D)数值模拟软件,对乌东煤矿煤层进行了沉降模拟,针对不同倾角条件下的地表沉降范围、地表沉降量进行了分析。并结合Excel软件分析了煤层倾角与开采沉降量之间相关性,建立了煤层倾角与煤层开采地表沉降量的线性回归方程,对煤层倾角和地表沉降量的关系进行验证。研究发现,煤层倾角是影响地表沉降量的重要因素。煤层倾角为35°、45°、55°和65°的煤层地表沉降最大值分别为1 039.9、495.44、234.42、118.56 mm,表明煤层倾角越小,随着开采层数的增加,地面沉降越明显。煤层倾角对矿区开采后地面沉降有显著影响。 展开更多
关键词 地表沉降 倾斜煤层 FLAC^(3D)数值模拟 回归模型
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基于ISSR标记的蕲艾遗传多样性分析
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作者 余姣君 黄瑞萱 +3 位作者 吴红梅 张吉 何峰 董洪进 《时珍国医国药》 CAS CSCD 北大核心 2024年第2期369-372,共4页
目的为鉴定蕲艾种质资源并为优质选育和推广奠定基础。方法利用ISSR分子标记技术对48份蕲艾样品进行扩增,并用PopGen1.32和GenAlEx 6.5等软件进行遗传多样性和聚类分析。结果通过预实验筛选的11条引物共扩增出184条条带,其中多态性条带... 目的为鉴定蕲艾种质资源并为优质选育和推广奠定基础。方法利用ISSR分子标记技术对48份蕲艾样品进行扩增,并用PopGen1.32和GenAlEx 6.5等软件进行遗传多样性和聚类分析。结果通过预实验筛选的11条引物共扩增出184条条带,其中多态性条带184条,多态性条带占比100%。观测等位基因数(Na),有效等位基因(Ne)变化范围分别为1.4728~1.5924和1.2867~1.3977,Nei’s总种群遗传多样性指数(Ht)为0.3521,种群间遗传分化系数(Gst)为0.4187,基因流(Nm)为0.6940,表明蕲艾遗传多样性较高,不同类群间有一定的分化和基因交流。根据UPGAME聚类分析结果,相似性系数为0.73时,48份艾草材料可被分为五个类群,其中类群4(野艾)和类群3(赤艾)的一致度最高,遗传距离最近,而类群2(白艾)和类群1(香艾)的一致度最低且遗传距离最远。结论ISSR分子标记技术可用于蕲艾遗传多样性和亲缘关系研究,可为蕲艾的鉴定以及资源挖掘提供基础参考。 展开更多
关键词 蕲艾 鉴定 ISSR 遗传多样性分析 扩增反应
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Velocity bunching in travelling wave accelerator with low acceleration gradient 被引量:1
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作者 黄瑞萱 何志刚 +1 位作者 李伟伟 贾启卡 《Chinese Physics C》 SCIE CAS CSCD 2014年第5期98-102,共5页
We present the analytical and simulated results of our study of the influence of the acceleration gradient in the velocity bunching process, which is a bunch compression scheme that uses a travelling wave accelerating... We present the analytical and simulated results of our study of the influence of the acceleration gradient in the velocity bunching process, which is a bunch compression scheme that uses a travelling wave accelerating structure as a compressor. Our study shows that the bunch compression application with low acceleration gradient is more tolerant to phase jitter and more successful in obtaining a compressed electron beam with symmetrical longitudinal distribution and low energy spread. We also present a transverse emittance compensation scheme to compensate the emittance growth caused by the increase of the space charge force in the compressing process, which is easy to adjust for different compression factors. 展开更多
关键词 travelling wave accelerating structure velocity bunching acceleration gradient emittance compensation
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Simulation study on the emittance compensation of off-axis emitted beam in RF photoinjector
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作者 黄瑞萱 Chad Mitchell +2 位作者 贾启卡 Christos Papadopoulos Fernando Sannibale 《Chinese Physics C》 SCIE CAS CSCD 2016年第11期184-190,共7页
To make full use of the photocathode material and improve its quantum efficiency lifetime, it can be necessary to operate the laser away from the cathode center in photoinjectors. In RF guns, the off-axis emitted beam... To make full use of the photocathode material and improve its quantum efficiency lifetime, it can be necessary to operate the laser away from the cathode center in photoinjectors. In RF guns, the off-axis emitted beam will see a time-dependent RF effect, which would generate a significant growth in transverse emittance. It has been demonstrated that such an emittance growth can be almost completely compensated by orienting the beam on a proper orbit in the downstream RF cavities along the injector [1]. In this paper we analyze in detail the simulation techniques used in reference [1] and the issues associated with them. The optimization of photoinjector systems involving off-axis beams is a challenging problem. To solve this problem, one needs advanced simulation tools including both genetic algorithms and an efficient algorithm for 3D space charge. In this paper, we report on simulation studies where the two codes ASTRA and IMPACT-T are used jointly to overcome these challenges, in order to optimize a system designed to compensate for the emittance growth in a beam emitted off axis. 展开更多
关键词 PHOTOINJECTOR off-axis emission genetic algorithm ASTRA IMPACT-T RF effect emittance compen-sation
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