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研究生: 李佳儒
CHIA-JU LEE
論文名稱: 外覆系統設計製造與工程資訊整合系統
Information integration for design and fabrication of building envelope
指導教授: 施宣光
Shen-Guan Shih
口試委員: 彭雲宏
Yeng-Horng Perng
郭榮欽
Rong-Chin Guo
學位類別: 碩士
Master
系所名稱: 設計學院 - 建築系
Department of Architecture
論文出版年: 2020
畢業學年度: 108
語文別: 英文
論文頁數: 71
中文關鍵詞: 資料庫系統參數化設計資訊整合外覆系統
外文關鍵詞: database system, parametric design, information integration, building envelope
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  • 資訊技術提升帶動了幾何建模軟體的進步,使得曲面建築成為趨勢。由於曲面幾何的特性,特殊建築構件的複雜度及多樣性劇增,傳統設計及製造之資料處理方式無法滿足需求。因此設計與資料的整合度處理效率必須提升,如何透過資訊整合技術,讓設計單位將特殊需求、設計和製造結合的設計資料存取下來,並提供各方檢視與分析,便是本研究所探討的內容。

    本研究主要利用資料庫系統結合幾何建模、電腦圖學,同時提供使用者分類模型概念、方法與資料庫整體架構的設計與分析,在建築設計階段中運用。最後透過曲面構造模型與模型資料的實際操作這兩項,確保此資料庫系統與建模軟體的連接,並根據實際操作的資料與模型測試於不同類型的資料庫下的結果。從此資料儲存方法與資料庫系統分析下,就速率與廣泛性而言,使用關聯性資料庫更符合現階段公司使用。



    Curved architecture has become a newly tendency to the advance in geometric modeling software. The property of curved geometry contributed to the increasing complexity and diversity of particular architectural structures, which brought about the incapability of traditional design and documenting to keep up with demand. As a result, it is necessary to develop the integration of design and data as well as the efficiency of processing. The goal of this research is to allow design departments and access the information combined with special requirements, design, and production via information integration technique.

    In this research, we used databases, geometric modeling, and computer graphics to provide users with classification conceptual models, methods, and the analysis of databases as well.
    After that, to ensure the successful connection between database system and modeling software, we carried out the actual operation of the curved-structure model and it’s information. To sum up, according to the analysis of the storage method and the design of databases, the efficiency and breadth of applying relevant databases is more suitable for the companies nowadays.

    CHAPTER 1: INTRODUCTION 1 1.1 Introduction 1 1.2 Motivation 1 1.3 Problem statement 2 CHAPTER 2: Background 5 2.1 Development trend of BIM 5 2.1.1 Internation trend 5 2.2Federated model 7 2.3 Common data environment 8 2.4 Curved surfaces are constructed on BIM 10 2.5 Conclusion 13 CHAPTER 3. System analysis and design 14 3.1 Demand analysis 14 3.1.1 Design team 15 3.1.2 Fabrication team 16 3.1.3 Construction team 17 3.2 System analysis 18 3.2.1 Model file submission and model information storage 18 3.3 System design 20 3.3.1 Interface 20 3.3.2 Function module 20 3.3.3 Data layer 21 3.3.4 Whole system design concept 21 3.3.5 Information Management Framework 22 3.4 Data Structuring 23 3.5 Database system workflow 32 3.5.1System pre - operation flow 32 3.5.2Model file data submission process 33 3.6 Connect database function module 38 Chapter 4.Case implementation and analysis 47 4.1 Case implementation 47 4.1.1 Parametric bending support structure 47 4.2 Compare SQL and Nosql for element-based Lifecycle Information Modelling of Curved Building Skins 51 4.2.1 Insert Speed 52 4.2.2 Update Speed 53 4.2.3 Select Speed 55 Chapter 5.Conclusions and Future work 58 5.1 Conclusion 58 5.2 Future work 59 Reference 60

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    [12]Pottmann, H., 2013,Architectural Geometry and Fabrication-Aware Design. Nexus Network Journal, page. 195-208.
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    [14] Lee, G. and S. Kim,2012 “Case Study of Mass Customization of Double-Curved Metal Facade FaçadePanels Using a New Hybrid Sheet Metal Processing Technique”, Journal of Construction Engineering and Management, 138:1322-1330
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[17]Eike Schling, Martin Kilian, Hui Wang, Jonas Schikore, Helmut Pottmann, 2018, Design and Construction of Curved Support, Advances in Architectural Geometry page.140-165

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