Structural fracture analysis method suitable for photovoltaic single-row greenhouse
An analysis method, photovoltaic technology, applied in special data processing applications, instruments, electrical digital data processing, etc., can solve problems such as structural failure, loss, collapse of photovoltaic greenhouses, etc., and achieve the effect of improving safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2018-09-18
- Estimated Expiration
- Not applicable · inactive patent
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Abstract
Description
technical field
[0001] The invention relates to the technical field of photovoltaic single-row sheds, in particular to a structural fracture analysis method suitable for photovoltaic single-row sheds. Background technique
[0002] In the existing analysis and design methods of photovoltaic single-row sheds, the material strength theory is used for structural design. However, photovoltaic single-row sheds are all in outdoor environments, and are mostly built in harsh environments with humidity, cold or strong winds. Under such conditions for a long time, the steel structure of photovoltaic single-row sheds is prone to cracks due to corrosion, stress concentration, etc. . If cracks occur in the steel structure of the photovoltaic single-row shed, it will further rapidly expand to the surrounding area and cause the structure to fail. Under strong wind conditions, it will cause the overall collapse of the photovoltaic shed and cause serious economic losses. Therefore, it is ne...
Examples
Embodiment Construction
[0019] see Figure 1-Figure 2 Shown, the technical scheme that this specific embodiment adopts is: it comprises the following steps:
[0020] (1) Establish the geometric model of the photovoltaic greenhouse through the 3D modeling software UG, save it as an STP format file, and then import it into the DESIGNMODELER module;
[0021] (2) Open the grid division for global analysis in the grid division software ANSYS MESHING;
[0022] (3) In the Static Structure module, the calculation load combination is calculated according to the building load code, and the global structural stress distribution of the photovoltaic single-row shed is obtained;
[0023] (4) Then perform finite element sub-model technology on the component connection parts of the photovoltaic single-row shed, finely model the component connection parts of the photovoltaic single-row shed, save it as an STP format file, and then import it into the grid division software ANSYS MESHING Carry out grid division;
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