Design Technique


Research and Development Achievements
Research and Development
Innovation in technology, products, and services has always been the core driving force for development. Lingyun adheres to innovation in curtain wall technology, material application, structural optimization, and design methods. It insists on conducting research and promoting the application of curtain wall and door and window technology, actively organizes and participates in academic activities, and has obtained multiple invention and utility model patents. It has published multiple core journal articles and is active at the forefront of industry technological progress and innovation.
Based on rich engineering practice experience and leading curtain wall technology advantages, Lingyun has built a curtain wall technology research platform, continuously increased investment in technology research and development, hired domestic and foreign experts and scholars in the field of architecture as technical consultants, established long-term industry university research cooperation relationships with well-known universities and research institutes at home and abroad, researched and explored new technologies and products in the international field, accurately grasped market trends, and successfully developed a series of high-tech achievements with independent intellectual property rights, leading the new wave of industry technology development.
1. Research and Application of Digital Design
In 2012, Lingyun was the first in the curtain wall industry to establish a BIM digital research and development team, and established cooperative relationships with well-known universities and architectural design institutes at home and abroad. They have completed more than 100 projects at home and abroad using BIM digital design. In recent years, the company has continuously expanded the breadth and depth of BIM technology in the field of positive design, and has acquired the ability to digitize BIM design on multiple platforms. At the same time, it continues to promote the deep expansion of BIM technology into processing, construction, operation and maintenance fields.
2. Automated Drawing and Manufacturing Based on BIM
The company's BIM digital design team has successfully used several mainstream 3D software to batch output and read the assembly drawings and part processing drawings of curtain wall unit panels, breaking down the barriers between CAD and CAM, and taking the lead in the domestic curtain wall industry to achieve a leap from digital design to digital manufacturing.

                                                                                          参数化提料程序(总图)                                                                          武汉智慧生态城参数化建模

 

Parameterized feeding results input into CAM

 

 

3. Material Management System Based on BIM Technology
A material management system based on BIM technology, using the curtain wall BIM model as the foundation, combined with project progress requirements, funding plans, and other information, outputs material lists, implements 5D information management, guides ordering, processing, and transportation, identifies situations that may affect the smooth progress of the project, issues warnings in a timely manner, and achieves maximum reasonable control of major materials.
4. Laser scanning modeling
The combination of laser scanning technology and building information modeling can quickly and accurately grasp the changes in the construction process, timely detect various logical collision problems in curtain wall buildings, propose solutions, and avoid material and schedule losses.
5. Unmanned aerial vehicle scanning point cloud modeling
The unmanned aerial vehicle scanning point cloud modeling technology developed by the company Suitable for existing buildings and complex shapes with incomplete drawings and difficult manual surveying, it has been successfully applied to multiple projects.

                                                               Shanghai Shipyard BIM Model                                   Dense Point Cloud Model of Shanghai Shipyard Site