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Huff模型支持下的基础教育资源分布分析 被引量:12
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作者 张静华 任福 +2 位作者 刘江涛 席宇亮 肖克 《地理信息世界》 2015年第2期44-50,共7页
在回顾国内外教育资源空间可达性研究的基础上,以广东省深圳市为例,以小学为分析单元,利用Huff模型进行各小学的学位压力研究。并将Huff模型与重力模型、距离模型进行比较。实验结果为,深圳的小学的学位压力主要集中在0.5~1.4范围,其中,... 在回顾国内外教育资源空间可达性研究的基础上,以广东省深圳市为例,以小学为分析单元,利用Huff模型进行各小学的学位压力研究。并将Huff模型与重力模型、距离模型进行比较。实验结果为,深圳的小学的学位压力主要集中在0.5~1.4范围,其中,有81所学校的学位压力为0.5~0.75,178所学校为0.75~1.25之间,大于1.25的有39所学校。学位压力大于1.25的学校,集中分布在福田区,其他街道中存在个别的学校学位压力偏大。结果表明Huff比其他模型好。为学校的空间布局提供合理化建议。 展开更多
关键词 Huff模型 学位压力 可达性 深圳
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Macro mechanical parameters’ size effect of surrounding rock of Shuibuya project’s underground power station 被引量:1
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作者 郭志华 周创兵 +2 位作者 周火明 盛谦 冷先伦 《Journal of Coal Science & Engineering(China)》 2005年第1期9-12,共4页
Scale effect is one of the important aspects in the macro mechanical parame- ters’ research of rock mass, from a new point of view, by means of lab and field rock me- chanics test, establishment of E^Vp relation, cla... Scale effect is one of the important aspects in the macro mechanical parame- ters’ research of rock mass, from a new point of view, by means of lab and field rock me- chanics test, establishment of E^Vp relation, classification of engineering rock mass, nu- merical simulation test and back analysis based on surrounding rock’s displacement monitoring results of Shuibuya Project’s underground power station, rock mass deforma- tion module’s size effect of surrounding rock of Shuibuya Project’s undegroud power sta- tion was studied. It’s shown that rock mass deformation module’s scale effect of sur- rounding rock of Shuibuya Project’s undeground power station is obvious, the rock mass deformation module to tranquilization is 20% of intact rock’s. Finally the relation between rock mass deformation modules and the scale of research was established. 展开更多
关键词 deformation module scale effect Shuibuya Project
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How to identify dislocations in molecular dynamics simulations? 被引量:11
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作者 LI Duo WANG Feng Chao +1 位作者 YANG Zhen Yu ZHAO Ya Pu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第12期2177-2187,共11页
Dislocations are of great importance in revealing the underlying mechanisms of deformed solid crystals.With the development of computational facilities and technologies,the observations of dislocations at atomic level... Dislocations are of great importance in revealing the underlying mechanisms of deformed solid crystals.With the development of computational facilities and technologies,the observations of dislocations at atomic level through numerical simulations are permitted.Molecular dynamics(MD)simulation suggests itself as a powerful tool for understanding and visualizing the creation of dislocations as well as the evolution of crystal defects.However,the numerical results from the large-scale MD simulations are not very illuminating by themselves and there exist various techniques for analyzing dislocations and the deformed crystal structures.Thus,it is a big challenge for the beginners in this community to choose a proper method to start their investigations.In this review,we summarized and discussed up to twelve existing structure characterization methods in MD simulations of deformed crystal solids.A comprehensive comparison was made between the advantages and disadvantages of these typical techniques.We also examined some of the recent advances in the dynamics of dislocations related to the hydraulic fracturing.It was found that the dislocation emission has a significant effect on the propagation and bifurcation of the crack tip in the hydraulic fracturing. 展开更多
关键词 dislocations DEFECTS MD simulation structural characterization hydraulic fracturing (fracking)
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