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Space three-dimensional suspension corridor and optimization method thereof
The invention discloses a space three-dimensional suspension gallery which comprises suspension galleries connected between indoor floor aisles, and oblique crossing grid columns are arranged on the edges of the indoor floor aisles. The suspension corridor comprises a plurality of fixed sections and a plurality of bridge floor sections from bottom to top, and the fixed sections or the corner sections are connected with the corresponding bridge floor sections through node connecting components. According to the method, on the basis that the stress performance of the gallery structure is preliminarily understood through part of implementable tests, a gallery simulation model is established, model parameters are continuously optimized for repeated debugging, then preliminary stress performance calculation is carried out, the result is compared with the result of part of the previous tests, and if the result is very similar to the test result, the test result is judged to be the test result. If yes, it is proved that the model is better, that is, the optimized model is obtained, and other more complex performance of the corridor is analyzed through the model; the optimization purpose of the invention is to make the structure and stress of the air gallery safer, more reliable and more comfortable.
本发明公开了一种空间立体悬吊廊道,包括连接室内楼层过道之间的悬吊廊道,其中室内楼层过道的边部均设有斜交网格柱;悬吊廊道从下往上包括若干固定段和若干桥面段,固定段或转角段均通过节点连接部件连接相应的桥面段。本发明还通过部分能实施的试验在对廊道结构受力性能有初步了解的基础上,建立廊道仿真模型,不断优化模型参数进行反复调试,然后进行初步受力性能计算并与之前做的部分试验结果进行对比,如果跟实验结果很相似,则证明该模型比较优,即得到优化后的模型,再通过这个模型去分析廊道其他更复杂的性能;本发明优化目的是使空中廊道结构和受力更安全、可靠、舒适。
Space three-dimensional suspension corridor and optimization method thereof
The invention discloses a space three-dimensional suspension gallery which comprises suspension galleries connected between indoor floor aisles, and oblique crossing grid columns are arranged on the edges of the indoor floor aisles. The suspension corridor comprises a plurality of fixed sections and a plurality of bridge floor sections from bottom to top, and the fixed sections or the corner sections are connected with the corresponding bridge floor sections through node connecting components. According to the method, on the basis that the stress performance of the gallery structure is preliminarily understood through part of implementable tests, a gallery simulation model is established, model parameters are continuously optimized for repeated debugging, then preliminary stress performance calculation is carried out, the result is compared with the result of part of the previous tests, and if the result is very similar to the test result, the test result is judged to be the test result. If yes, it is proved that the model is better, that is, the optimized model is obtained, and other more complex performance of the corridor is analyzed through the model; the optimization purpose of the invention is to make the structure and stress of the air gallery safer, more reliable and more comfortable.
本发明公开了一种空间立体悬吊廊道,包括连接室内楼层过道之间的悬吊廊道,其中室内楼层过道的边部均设有斜交网格柱;悬吊廊道从下往上包括若干固定段和若干桥面段,固定段或转角段均通过节点连接部件连接相应的桥面段。本发明还通过部分能实施的试验在对廊道结构受力性能有初步了解的基础上,建立廊道仿真模型,不断优化模型参数进行反复调试,然后进行初步受力性能计算并与之前做的部分试验结果进行对比,如果跟实验结果很相似,则证明该模型比较优,即得到优化后的模型,再通过这个模型去分析廊道其他更复杂的性能;本发明优化目的是使空中廊道结构和受力更安全、可靠、舒适。
Space three-dimensional suspension corridor and optimization method thereof
一种空间立体悬吊廊道及其优化方法
ZHENG ZHITAO (Autor:in) / LI SHENG (Autor:in) / DENG HONGLIANG (Autor:in) / SHEN WENBING (Autor:in) / LI CHUANG (Autor:in) / PENG WANJUN (Autor:in) / SHI XUGUANG (Autor:in) / XIE FUMEI (Autor:in)
12.07.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E04F
FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
,
Ausbau von Bauwerken, z.B. Treppen, Fußböden
/
E01D
BRIDGES
,
Brücken
/
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
E04H
Gebäude oder ähnliche Bauwerke für besondere Zwecke
,
BUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES
/
G06F
ELECTRIC DIGITAL DATA PROCESSING
,
Elektrische digitale Datenverarbeitung
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