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Gymnasium Superposition Design Research Based On Lightweight Floor Vibration Simulation

Posted on:2014-01-03Degree:MasterType:Thesis
Country:ChinaCandidate:C C LaiFull Text:PDF
GTID:2322330422490592Subject:Architecture
Abstract/Summary:PDF Full Text Request
With the improvement of living standards and government encourage people totake part in exercises, a lot of cities built various kinds of sports gyms. However, inthe prosperity central urban area is restricted by location. To solve this problem, wetend to save land, to improve the building volume rate, in order to achieve this goal,the sports gymnasium will be in the form of superposition. And the trend of lighterstructures development, cause gymnasium superposition design is faced with moresevere problem of floor slab structure response: such as in the long-span fitnessfield's bodybuilders are running, jumping, standing up or doing other rhythmicbehaviors cause the floor slab structure having vibration response problems.Gymnasium spatial has its specificity for sports venue, for instance: long-span,human behavior is random, at the same time the requirements of ball venue are verystringent; bodybuilders' requirement for the vibration comfort environment; someother static functional space for floor structure has more strict demand than fitnessvenue. Therefore, in the design the various factors must be taken into account. Takethe results of floor structure's vibration response as contrast, seeking to optimizespace design, functional combination, structure selection and other issues forgymnasium.The article according to ask questions, analyze and solve problems graduallyinto three steps.First of all, in the term of gymnasium's related with floor structure, putsforward four main affecting architecture events: long-span space scale, long-spanspace layouts of superposition method, long-span spatial layout mode, long-spanspace within specific ball venue layout. Then according to theoretical research andpractical project these four factors will be further subdivided into different types;Next, choose ANSYS software as the carrier selected unit, material, meshing inorder to establish each experimental subjects finite element model. Setting eachsubject by the specific load size and load loading points, calculating each type ofmodal analysis and transient dynamics analysis solution, getting draw shapes foreach type of structure diagram and peak acceleration contours. Then, to compare and analysis of each building factors which containsdifferent sub-type of experiment results. According to specific requirement of theacceleration limits to get the optimal solution.Finally, summarize the abstract experimental images and data, combined withthe specific means of architectural design at the same time, put forward the ANSYSsimulation experiment research results into architecture design practices applicationmethods. Due to in the architectural design cannot just focus on the one hand, itshould also should be combined results with a variety of other factors, so that froman overall perspective to think over optimizing the gymnasium superposition design.
Keywords/Search Tags:Lightweight floor, Vibration simulation, Gymnasium, Superpositiondesign
PDF Full Text Request
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