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Embedded module splitting and lightweight optimization method
The invention relates to the technical field of modular buildings, in particular to an embedded module splitting and lightweight optimization method, which comprises the following steps of: according to a pre-confirmed building function layout and a module size of an embedded module, carrying out preliminary region division on the embedded module according to standardization limitation; determining a region function corresponding to each divided region; according to the area function corresponding to each area, the load distribution condition borne by the area is obtained; dividing each region into at least one embedded sub-module according to the load distribution condition of each region and a preset load difference threshold value; the load difference value of any two positions in each embedded sub-module is smaller than a load difference value threshold value; and the embedded module is formed by splicing all the embedded sub-modules after all the regions are divided. The embedded module system has the beneficial effects that the problem of lightweight design of the embedded module in the embedded module system is solved, and the cost of the embedded module system in the implementation process is effectively reduced.
本发明涉及模块化建筑技术领域,尤其涉及一种嵌入式模块拆分及轻量化优化方法,包括,根据嵌入式模块预先确认的建筑功能布局和模块尺寸,将所述嵌入式模块按照标准化限制进行初步区域划分,并确认划分后每个区域的对应的区域功能;根据每个区域对应的区域功能,获得该区域所受的荷载分布情况;根据每个区域所受的荷载分布情况和预先设置的荷载差值阈值,将每个区域均划分为至少一个嵌入式子模块;每个嵌入式子模块中任意两个位置的荷载差值均小于荷载差值阈值;所述嵌入式模块由所有区域划分后的所有嵌入式子模块拼接而成。其有益效果是,解决了嵌入式模块体系中嵌入式模块的轻量化设计的问题,有效降低了嵌入式模块体系在实现过程中的成本。
Embedded module splitting and lightweight optimization method
The invention relates to the technical field of modular buildings, in particular to an embedded module splitting and lightweight optimization method, which comprises the following steps of: according to a pre-confirmed building function layout and a module size of an embedded module, carrying out preliminary region division on the embedded module according to standardization limitation; determining a region function corresponding to each divided region; according to the area function corresponding to each area, the load distribution condition borne by the area is obtained; dividing each region into at least one embedded sub-module according to the load distribution condition of each region and a preset load difference threshold value; the load difference value of any two positions in each embedded sub-module is smaller than a load difference value threshold value; and the embedded module is formed by splicing all the embedded sub-modules after all the regions are divided. The embedded module system has the beneficial effects that the problem of lightweight design of the embedded module in the embedded module system is solved, and the cost of the embedded module system in the implementation process is effectively reduced.
本发明涉及模块化建筑技术领域,尤其涉及一种嵌入式模块拆分及轻量化优化方法,包括,根据嵌入式模块预先确认的建筑功能布局和模块尺寸,将所述嵌入式模块按照标准化限制进行初步区域划分,并确认划分后每个区域的对应的区域功能;根据每个区域对应的区域功能,获得该区域所受的荷载分布情况;根据每个区域所受的荷载分布情况和预先设置的荷载差值阈值,将每个区域均划分为至少一个嵌入式子模块;每个嵌入式子模块中任意两个位置的荷载差值均小于荷载差值阈值;所述嵌入式模块由所有区域划分后的所有嵌入式子模块拼接而成。其有益效果是,解决了嵌入式模块体系中嵌入式模块的轻量化设计的问题,有效降低了嵌入式模块体系在实现过程中的成本。
Embedded module splitting and lightweight optimization method
一种嵌入式模块拆分及轻量化优化方法
CHEN JUNSONG (author) / LI ZHEJING (author) / ZHANG BAIYAN (author) / WANG QIONG (author) / ZHAN HE (author) / ZHANG YONG (author) / LIN JIANKUN (author) / HE CHENGLE (author) / ZHANG DEJUN (author)
2024-07-12
Patent
Electronic Resource
Chinese
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