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基于同步运移理论的瓦斯抽采气固耦合数值模拟 被引量:8
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作者 张美红 吴世跃 +1 位作者 牛煜 孟晓红 《太原理工大学学报》 CAS 北大核心 2015年第1期60-63,68,共5页
以煤层瓦斯扩散渗流同步运移理论为基础,综合考虑瓦斯抽采过程中煤体变形引起的孔隙率、渗透率变化,建立了瓦斯抽采气固耦合动态数学模型。以晋城某矿为例,结合该矿煤层赋存特征,借助Comsol multiphysics软件进行了数值模拟,模拟结果表... 以煤层瓦斯扩散渗流同步运移理论为基础,综合考虑瓦斯抽采过程中煤体变形引起的孔隙率、渗透率变化,建立了瓦斯抽采气固耦合动态数学模型。以晋城某矿为例,结合该矿煤层赋存特征,借助Comsol multiphysics软件进行了数值模拟,模拟结果表明在瓦斯抽采过程中有效抽采半径与抽采时间符合幂函数关系;随着煤层埋藏深度增加,上覆应力增大,煤层孔隙率和渗透率降低,是导致瓦斯抽采难度增加的主要原因,为此如何能提高煤层的渗透率和孔隙率是增加瓦斯抽采率的关键;单纯增大抽采负压对提高瓦斯抽采率影响不大。该研究结论为优化瓦斯抽采工艺参数提供了理论依据。 展开更多
关键词 同步运移 瓦斯场 煤体变形 瓦斯抽采 数值模拟
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青藏高原地壳与上地幔成层速度结构与深部层间物质的运移轨迹 被引量:42
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作者 滕吉文 阮小敏 +2 位作者 张永谦 胡国泽 闫亚芬 《岩石学报》 SCIE EI CAS CSCD 北大核心 2012年第12期4077-4100,共24页
在印度洋板块与欧亚板块碰撞、挤压作用下,促使深部物质重新分异、调整和运移,并导致了地壳的短缩增厚,而且造成了高原的整体隆升和深部壳、幔物质的侧向流展。基于青藏高原腹地和周边地域地壳与上地幔的成层速度结构,特别是其特异层序... 在印度洋板块与欧亚板块碰撞、挤压作用下,促使深部物质重新分异、调整和运移,并导致了地壳的短缩增厚,而且造成了高原的整体隆升和深部壳、幔物质的侧向流展。基于青藏高原腹地和周边地域地壳与上地幔的成层速度结构,特别是其特异层序的展布研究表明,青藏高原地壳巨厚,但岩石圈却相对较薄;地壳中于深20±5km处存在一低速层,层速度为5.7±0.1km/s,厚度为8±2km;上地幔软流圈顶部深度为110±10km;下地壳与上地幔盖层物质以地壳低速层为上滑移面,以岩石圈漂曳的上地幔软流圈顶面为下滑移面,在印度洋板块N-NNE向力源作用下在同步运移,即形成了青藏高原腹地和周边地域特异的大陆地球动力学环境。 展开更多
关键词 壳、幔结构 地壳低速层 上地幔软流层 下地壳与上地幔盖层同步运移 青藏高原
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土壤中水、热、溶质运移的研究现状及展望 被引量:8
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作者 李法虎 《灌溉排水》 CSCD 1994年第1期7-9,共3页
本文参阅国内外近几十年来的科技文献,概括性地综述了土壤中水、热、溶质同步运移的研究现状及相互关系,指出了本领域发展中存在的主要问题及研究方向。
关键词 同步运移 土壤水热运动 溶质运动
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Why do fish school? 被引量:2
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《Current Zoology》 SCIE CAS CSCD 2012年第1期116-128,共13页
Synchronized movements (schooling) emit complex and overlapping sound and pressure curves that might confuse the inner ear and lateral line organ (LLO) of a predator. Moreover, prey-fish moving close to each other... Synchronized movements (schooling) emit complex and overlapping sound and pressure curves that might confuse the inner ear and lateral line organ (LLO) of a predator. Moreover, prey-fish moving close to each other may blur the elec- tro-sensory perception of predators. The aim of this review is to explore mechanisms associated with synchronous swimming that may have contributed to increased adaptation and as a consequence may have influenced the evolution of schooling. The evolu- tionary development of the inner ear and the LLO increased the capacity to detect potential prey, possibly leading to an increased potential for cannibalism in the shoal, but also helped small fish to avoid joining larger fish, resulting in size homogeneity and, accordingly, an increased capacity for moving in synchrony. Water-movements and incidental sound produced as by-product of locomotion (ISOL) may provide fish with potentially useful information during swimming, such as neighbour body-size, speed, and location. When many fish move close to one another ISOL will be energetic and complex. Quiet intervals will be few. Fish moving in synchrony will have the capacity to discontinue movements simultaneously, providing relatively quiet intervals to al- low the reception of potentially critical environmental signals. Besides, synchronized movements may facilitate auditory grouping of ISOL. Turning preference bias, well-functioning sense organs, good health, and skillful motor performance might be important to achieving an appropriate distance to school neighbors and aid the individual fish in reducing time spent in the comparatively less safe school periphery. Turning preferences in ancestral fish shoals might have helped fish to maintain groups and stay in for- mation, reinforcing aforementioned predator confusion mechanisms, which possibly played a role in the lateralization of the ver- tebrate brain [Current Zoology 58 (1): 116-128, 2012]. 展开更多
关键词 Group synchrony Hearing in fish Lateral line Electro-sensory system Sensory reafference LATERALIZATION
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