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探析板式高层住宅户型的可变性设计要点 被引量:2
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作者 杨艳丽 《建材与装饰》 2020年第6期96-97,共2页
针对目前板式高层住宅户型进行可变性设计过程存在的问题,本文以实际工程项目为例,分析了工程项目的实际情况与建设要求,并提出了可变性的设计要点,其目的是为相关建设者提供一些理论依据。事实证明,只有与板式高层住宅的实际情况进行结... 针对目前板式高层住宅户型进行可变性设计过程存在的问题,本文以实际工程项目为例,分析了工程项目的实际情况与建设要求,并提出了可变性的设计要点,其目的是为相关建设者提供一些理论依据。事实证明,只有与板式高层住宅的实际情况进行结合,才可使可变性设计策略满足用户与住宅空间区域的基本功能需求与多样性需求。 展开更多
关键词 板式高层住宅 户型 可变性设计 填充体设计 协调设计
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Optimization of Reinforced Concrete Cum Masonry Construction
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作者 John K. Makunza 《Journal of Civil Engineering and Architecture》 2015年第10期1137-1145,共9页
In design and construction of low/high rise buildings, different forms of construction can be applied such as concrete shear wall structural system and framed structural system without or with masonry infill walls. At... In design and construction of low/high rise buildings, different forms of construction can be applied such as concrete shear wall structural system and framed structural system without or with masonry infill walls. At present, most buildings in East Africa are constructed as reinforced concrete framed structures with strong masonry infill, but during design, engineers assume that the masonry infill panels have zero contribution in offering load resistance. Due to the problem above, a study with an objective of finding out the influence of masonry panels on the properties of reinforced concrete infilled frame under vertical load has been done. Three types of models: reinforced concrete frame model, masonry model and reinforced concrete frame with masonry infill, were investigated using finite element technique. In additional to the finite element analysis, laboratory models were prepared and tested so as to check the validity of the analytical results. The obtained results have led to an establishment of a mathematical model which may be useful to the design engineers since masonry wall panels can now be considered as load bearing elements. Such consideration of frame together with masonry leads to an accurate and optimal design of the frame, resulting into lesser amount of reinforcement and geometrical properties of the frame. 展开更多
关键词 CONCRETE masonry infill FRAME design and finite-element.
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Optimization design of deep lean-ore mining and safety evaluation
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作者 YU Wei-jian GAO Qian 《Journal of Coal Science & Engineering(China)》 2010年第2期163-169,共7页
In order to settle the mining optimization design and safety problem of the above 1 150 m pillar of No.1 ore-body in No.H Mining Jinchuan, the lean-ore above 1 250 m, the 1 150 m horizontal pillar and the ore-body bel... In order to settle the mining optimization design and safety problem of the above 1 150 m pillar of No.1 ore-body in No.H Mining Jinchuan, the lean-ore above 1 250 m, the 1 150 m horizontal pillar and the ore-body below 1 100 m regarded as research objects based on the original design project, and nine calculation schemes on different mining sequence and different fill body strength were put forward based on cement-sand ratio of 1 : 4, 1: 12 and 1 : 24. Calculation parameters were got by the back analysis method of field monitoring data, and the FLAC2D program was applied to compute for these schemes, stress and displacement of ground settlement, shaft and stope roof were analyzed, and some conclusions were got. Results show that the intensity of filling body and the mining technique have very important effect on controlling settlement and stability of surrounding rock; Developing of lean ore have some influences to the 16th return air filling shaft, especially for 1 500--1 400 m of the shaft; The best project is the first project. This research supply some technique references and safety appraisals for the mining of lean-ore of No.II Mining Jinchuan. 展开更多
关键词 lean-ore mining numerical analysis optimization design safety evaluation
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