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基于适应性再利用的小型历史建筑改造设计以南京市大板巷35号建筑为例 被引量:2
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作者 殷伟韬 《室内设计与装修》 2021年第6期124-125,共2页
近年来,小型历史建筑适应性再利用项目日益受到各方关注。本文系统梳理和总结了小型历史建筑改造利用的设计思路,并以南京市大板巷35号建筑为例,对历史文化、空间形态、室内外环境等重点因素加以剖析,探讨多元因素交织影响下的小型历史... 近年来,小型历史建筑适应性再利用项目日益受到各方关注。本文系统梳理和总结了小型历史建筑改造利用的设计思路,并以南京市大板巷35号建筑为例,对历史文化、空间形态、室内外环境等重点因素加以剖析,探讨多元因素交织影响下的小型历史建筑改造设计的实践探索,以期为我国同类历史建筑改造利用提供借鉴与参考。 展开更多
关键词 小型历史建筑 适应性再利用 改造设计 南京市大板巷
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浅谈南捕厅历史城区大板巷西侧地块保护与更新设计
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作者 孙铭泽 《丝路视野》 2019年第14期86-88,共3页
南捕厅历史城区位于南京市老城区范围内,是至今仍然保留着传统街巷风貌的典型街区,具有鲜明的历史特征。但随着时间推移,老建筑得不到较系统的维护,品质和风貌均在下降,街区虽然保留了原有街巷的格局特点,但公共空间、配套、市政设施等... 南捕厅历史城区位于南京市老城区范围内,是至今仍然保留着传统街巷风貌的典型街区,具有鲜明的历史特征。但随着时间推移,老建筑得不到较系统的维护,品质和风貌均在下降,街区虽然保留了原有街巷的格局特点,但公共空间、配套、市政设施等严重缺乏的问题日渐突出。本文以南捕厅历史城区内的大板巷西侧地块的保护与更新设计为例,探讨历史城区的保护与更新设计策略。 展开更多
关键词 南捕厅历史城区 大板巷 保护与更新设计
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Mechanism and technology study of collaborative support with long and short bolts in large-deformation roadways 被引量:5
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作者 Yu Hui Niu Zhiyong +2 位作者 Kong Linggen Hao Caicheng Cao Peng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第4期587-593,共7页
Common short bolts of equal length are widely used to support the roofs of roadways in coal mines.However, they are insufficient to keep the roof stable against large deformations, so docking long bolts with high leve... Common short bolts of equal length are widely used to support the roofs of roadways in coal mines.However, they are insufficient to keep the roof stable against large deformations, so docking long bolts with high levels of elongation that can adapt to large deformations of the surrounding rock have been adopted. This paper proposes a collaborative support method that uses long and short bolts. In this study,the mechanism of docking long bolts and collaborative support was studied. Numerical simulation, similarity simulation, and field testing were used to analyze the distribution law of the displacement, stress,and plastic failure in the surrounding rock under different support schemes. Compared with the equal-length short bolt support, the collaborative support changed the maximum principal stress of the shallow roof from tensile stress to compressive stress, and the minimum principal stress of the roof significantly increased. The stress concentration degree of the anchorage zone clearly increased. The deformation of the roof and the two sides was greatly reduced, and the subsidence shape of the shallow roof changed from serrated to a smooth curve. The roof integrity was enhanced, and the roof moved down as a whole. Plastic failure significantly decreased, and the plastic zone of the roof was within the anchorage range. The similarity simulation results showed that, under the maximum mining stress,the roof collapsed with the equal-length short bolt support but remained stable with the collaborative support. The collaborative support method was successfully applied in the field and clearly improved the stability of the surrounding rock for a large deformation roadway. 展开更多
关键词 Collaborative support with long and shortbolt Docking long bolt Numerical analysis Similarity simulation
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Mechanism and practice of rock control in deep large span cut holes 被引量:2
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作者 Li Chong Xu Jinhai +2 位作者 Fu Chunsheng Wu Rui Ma Qianqian 《Mining Science and Technology》 EI CAS 2011年第6期891-896,共6页
Deep large span cut holes are difficult to stabilize. The 7801 cut hole in the Lu'an Wuyang Mine was used as this project's background. The main factors affecting large span cut hole stability are analyzed. Pr... Deep large span cut holes are difficult to stabilize. The 7801 cut hole in the Lu'an Wuyang Mine was used as this project's background. The main factors affecting large span cut hole stability are analyzed. Pre- stressed bolting theory was used to design a roof control method for a large span roadway. By reducing the span and applying equal strength coordinated supports the rock could be stabilized. The control prin- ciples and methods are given herein along with the analysis. A double micro arch cross section roadway is defined and its use in solving the current problem is described. Beam arch theory was used to build a model of the double micro arch cross section roadway. A support reverse force model for the arch foot intersection was also derived. A support method based upon reducing the width of the large span in the cut hole is presented. These results show that the reduced span of the roadway roof plus the use of cable anchors and single supports gives an effective way to control the large span cut hole. On site monitoring showed that the reduced span support from the double micro arch cross section roadway design had a significant effect. The roadway surface displacement was small and harmful deformation of the cut hole was effectively controlled. This will ensure its long term stability. 展开更多
关键词 Deep large span cut hole Double micro arch cross-section roadway Roof control by cross cut Equal strength coordinated support
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