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河北省综合承载力分析及对策研究 被引量:6
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作者 史宝娟 郑祖婷 《河北经贸大学学报》 CSSCI 北大核心 2014年第4期78-81,共4页
河北省存在着资源消耗强度大、污染物排放增加、环境恶化、交通拥堵等一系列与综合承载力相关的问题。通过构建综合承载力评价指标体系,运用突变级数法计算河北省综合承载能力和承压水平,发现河北省资源承载力和承压水平较低。河北省应... 河北省存在着资源消耗强度大、污染物排放增加、环境恶化、交通拥堵等一系列与综合承载力相关的问题。通过构建综合承载力评价指标体系,运用突变级数法计算河北省综合承载能力和承压水平,发现河北省资源承载力和承压水平较低。河北省应合理配置资源、保护生态环境、合理控制城市规模、提高社会化服务水平,实现资源、环境、经济、社会承载力的整体协调发展。 展开更多
关键词 河北省 综合承载力 承压水平 突变级数法 环境保护 城市规划 资源需求
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河北省综合承载力评价研究 被引量:1
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作者 史宝娟 郑祖婷 《商业时代》 北大核心 2013年第30期143-145,共3页
本文从资源、环境、经济、社会四方面建立综合承载力评价指标体系,以河北省为研究对象,基于熵值法确立指标权重,通过综合评价指数法计算河北省综合承载能力和各系统承压水平,指出河北省综合承载力平稳上升,资源、社会承压能力较弱,河北... 本文从资源、环境、经济、社会四方面建立综合承载力评价指标体系,以河北省为研究对象,基于熵值法确立指标权重,通过综合评价指数法计算河北省综合承载能力和各系统承压水平,指出河北省综合承载力平稳上升,资源、社会承压能力较弱,河北省应当在大力发展经济的同时,注意节约能源,提升社会化服务水平。 展开更多
关键词 综合承载力 承压水平 评价熵值法
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Characteristics of deformation and stress distribution of small coa pillars under leading abutment pressure 被引量:7
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作者 Wu Hai Zhang Nong +2 位作者 Wang Weijun Zhao Yiming Cao Peng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第6期921-926,共6页
Based on the engineering project on a small coal pillar of 12,521 working face roadway in Xieqiao Coalmine, data regarding surface displacements of the coal pillar, deep displacements and mining stress have been colle... Based on the engineering project on a small coal pillar of 12,521 working face roadway in Xieqiao Coalmine, data regarding surface displacements of the coal pillar, deep displacements and mining stress have been collected and analyzed. The results show that macroscopic transverse fractures of the inner coal pillar are developed within 2–4 m of the roadway surface, which is located outside the coal pillar anchorage zone. There is a displacement of 530 mm at the monitoring point in the 6 m deep zone of the pillar. Transfer of the fracture zone is found in a small coal pillar and the fractures within 3–4 m of the coal-rock zone from the roadway surface undergo propagation and closure of cracks which means this fracture zone is transferred from 3–4 m outside the roadway to only 2–3 m from the roadway surface. In the monitoring zone, vertical and horizontal stresses increase with a feature that shows that acceleration in the deep zone of the pillar is greater than that in the shallow zone. Furthermore, the acceleration of vertical stress is also greater than that of horizontal stress with a peak value in the 4 m zone.The research findings provide a reference for the regulation of a reasonable width of coal pillar in coalmines and optimal control design of surrounding rock. 展开更多
关键词 Small coal pillarLeading abutment pressureDeformationDisplacements
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