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论艺术生态系统的生态特征 被引量:3
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作者 沈勇 贾双飞 《广西师范大学学报(哲学社会科学版)》 北大核心 2010年第5期110-113,共4页
艺术生态系统除了具有一般系统所具有的共同特征外,还具有时空概念性、群落生态性、生态演替性、自调控性、"人工性"等生态特征。研究艺术生态系统的生态特征,对于人类管理艺术生态系统、保持艺术生态系统的平衡、充分发挥艺... 艺术生态系统除了具有一般系统所具有的共同特征外,还具有时空概念性、群落生态性、生态演替性、自调控性、"人工性"等生态特征。研究艺术生态系统的生态特征,对于人类管理艺术生态系统、保持艺术生态系统的平衡、充分发挥艺术的生态功能具有一定的价值和意义。 展开更多
关键词 艺术生态系统 时空概念性 群落生态 生态演替 自调控 人工
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A "TIME-SPACE" RELATED DESIGN METHOD OF FREEZING WALL
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作者 陈湘生 《Journal of Coal Science & Engineering(China)》 1996年第2期63-66,共4页
Artificially ground freezing (AGF) is one of the main methods to establish temporary support for shaft sinking in unstable water bearing strata. Domde (1915) formula based on frozen soil strength has widely been used ... Artificially ground freezing (AGF) is one of the main methods to establish temporary support for shaft sinking in unstable water bearing strata. Domde (1915) formula based on frozen soil strength has widely been used for designing freezing wall thickness. However, it can not ensure the stability of freezing wall, nor guarantee the safety of shaft construction as frozen depth increases in unstable water bearing strata. F A. Auld (1985, 1988)[1,2] presented a design method of freezing wall, which is on the basis of strength and stability, together with deformation of freezing wall. This paper, according to the practice in China, describes a "time -space" related design method for deep freezing wall. The method is based on "time-space" concept, which includes influence of excavation rate of advance, unsupported length of freezing wall and the sump state on inward deformation of freezing wall, and the allowable pipe deformation caused by inward deformation of freezing wall. Finally, successful application of this method to the large scale coal mine-Jining No. 2 Mine[3] in Shandong Province of China is presented. It saved much investment compared with F. A. Auld’s design for the same mine. 展开更多
关键词 ground freezing freezing wall DESIGN time-space concept
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