| 研究生: |
潘守言 Pan, Shou-Yen |
|---|---|
| 論文名稱: |
類水泥材料積層製造系統之建構-應用於澎湖縣珊瑚復育 Zero cement material for 3D printing system- Applied to coral restoration in Penghu County |
| 指導教授: |
劉舜仁
Liou, Shuenn-Ren 郭文毅 Kuo, Wen-Yih |
| 學位類別: |
碩士 Master |
| 系所名稱: |
規劃與設計學院 - 建築學系 Department of Architecture |
| 論文出版年: | 2022 |
| 畢業學年度: | 110 |
| 語文別: | 中文 |
| 論文頁數: | 86 |
| 中文關鍵詞: | 循環經濟 、積層製造 、鹼激發材料 、珊瑚復育 |
| 外文關鍵詞: | Circular Economy, 3D Printing, Alkali-Aictivated-Slag, Coral Restoration |
| 相關次數: | 點閱:152 下載:38 |
| 分享至: |
| 查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報 |
本論文主要研究在循環經濟的架構下以積層製造的方式使用澎湖縣當地的廢棄牡蠣殼澎湖作為原料達到去化廢棄牡蠣殼,再藉由積層製造出設計人工移植礁投入當地海域作為復育珊瑚的基地,其中研究部分是將C-Cube研發團隊之鹼激發零水泥循環漿體為基礎,將會使用澎湖當地廢棄牡蠣殼完全取替石英砂,以及積層製造機器的研究,設計部分則是結合上述研究以珊瑚復育為目標,創造出對環境友善且有效於珊瑚復育之設計。
The purpose of this study is the Development of the composite cement material for 3D printing system reuse the discarded oyster shells waste locally in Penghu County as the material and print out the artificial coral structure through the new 3D printing system to support the reefs’ natural recovery base.
Among the research of composite cement is based on the Alkali-Aictivated-Slag circulating slurry (C-Slurry) of C-Cube development and research teams, replace the silica sand to the local shells waste in Penghu.Combine the material and eco research with technology to create an eco-friendly and efficient coral restoration design to reach reefs’ natural recovery local in Penghu as the main target.
英文文獻
[1] Reef rehabilitation manual. St. Lucia, Australia: Coral Reef Targeted Research & Capacity Building for Management Program. (Edwards, A.J., 2010)
[2] Reproduction by fragmentation in corals.(Highsmith, R., 1982)
[3] Post-settlement survivorship of artificially supplied Acropora coral larvae in the
Sekisei Lagoon.
(Suzuki, G., Kai, S., Fujikura, Y., Yamashita, H., 2018)
[4] Density-dependent effects on initial growth of a branching coral under restoration: Density affects coral restoration.
(Griffin, J.N., Schrack, E.C., Lewis, K.A., Baums, I.B., Soomdat, N., Silliman. B.R., 2015)
[5] Time to cash in on positive interactions for coral restoration.
(Shaver, E.C., Silliman, B.R., 2017)
[6] Employing a highly fragmented, weedy coral species in reef restoration.
(Shaish, L., Levy, G., Katzir, G., and Rinkevich, B., 2010)
[7] Fragmentation in Montipora ramosa: the genet and ramet concept applied to a reef coral. (Heyward, A.J., Collins, J.D., 1985)
[8] Growth and survival of Pocillopora damicornis (Scleractinia: Pocilloporidae) coral fragments and their potential for coral reef restoration in the Tropical Eastern Pacific. (Lizcano-Sandoval, L.D., Londoño-Cruz, E., Zapata, F., 2018)
[9] Sexual reproduction of scleractinian corals in public aquariums: current status and future perspectives. (Petersen, D., 2008)
[10] Long-term benefits of artificial reef modules for reef recovery in gulf of Mannar, Southeast India. (Kasparraj-Diraviya, R., Mathews, G., Edward, J., 2020)
中文文獻
[一] 澎湖海域亞熱帶石珊瑚群聚之研究 (謝恆毅,2008)