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Disc Type Of Stirling Engine Disc Frame Design And Testing Equipment

Posted on:2012-07-16Degree:MasterType:Thesis
Country:ChinaCandidate:X P LiFull Text:PDF
GTID:2272330335966886Subject:Mechanical Manufacturing and Automation
Abstract/Summary:PDF Full Text Request
Disc type Stirling engine of dish rack main basis principle is the principle of rotating parabolic focusing the light through focus improve light energy density. This topic is based on the principle, according to the parameters are given first designed requirement according to the area, rotating parabolic rotating paraboloid of the area distribution identified on the distribution of glass lenses paraboloid and the type of glass lenses.The second step using Pro/E through 3d modeling, according to the distribution of glass lenses designed machinery of body structure of 3d model, dish rack ontology is divided into five parts: disc steel-frame structure, highly Angle frame transmission, direction Angle transmission, the horizontal axis of components, pillar components.In three-dimensional model of these actuators to assemble, meet the design requirements. Reuse FLUENT software to the laminar flow model, and the simulation for a different direction under different wind load the dish rack. Put out the data and steel weight of loading to establish itself on the 3d model, using ANSYS software, and analyze the different wind to disc frame under different wind, analyzed the influence of the rigidity of wind and their effect of heavy load disc frame deformation of design whether a movement of structural interfere, adjustment.The next step using wind load data, that of actuators altitude angles and direction Angle of transmission parts design, and carries on the check.Finally the installation of mainly aimed at the lens testing, through the lens design dish rack of installation equipment guarantee dish rack to reach spotlighting requirements lenses.
Keywords/Search Tags:Disc frame, The wind load, Interference, Transmission components, detection
PDF Full Text Request
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