3D打印降溫牆
TU Graz 利用多孔陶瓷實現被動式蒸發降溫
3D 打印散熱牆,為降低建築物及城市環境溫度,提供一種節能方式。格拉茨科技大學(TU Graz)研究人員,研發出結合積層製造與蒸發冷卻技術的多孔陶瓷方塊——蒸發冷卻是一種水分蒸發時吸收周遭熱能的過程。複雜的打印幾何結構,可將表面面積最大化,並將水分均勻分布於整個陶瓷結構之中,協助結構提供持續的被動式散熱。在酷熱閣樓的測試中,一個注水方塊令其鄰近環境溫度下降近攝氏七度。
此概念展示出建築設計如何能將被動式散熱直接融入建築物料之中,而非單純依賴高耗能的空調系統。對建築公司、建築師及市政機構而言,此類系統有望為住宅、辦公室、學校及公共空間,帶來低耗能散熱的機會。3D 打印技術亦可實現訂製結構及多元物料組合,有望支持更具資源效益的耐熱城市發展方式。
英文原文
3D-printed cooling walls are offering an energy-efficient approach to reducing temperatures in buildings and urban environments. Researchers at TU Graz developed porous ceramic cubes that combine additive manufacturing with evaporative cooling, a process in which water absorbs surrounding heat as it evaporates. Complex printed geometries maximize surface area and distribute water throughout the ceramic, helping the structures provide continuous passive cooling. During testing in a hot attic, a water-filled cube lowered the temperature in its immediate surroundings by almost seven degrees Celsius.
The concept demonstrates how architecture can incorporate passive cooling directly into building materials rather than relying exclusively on energy-intensive air conditioning. For construction companies, architects and municipalities, these systems could create opportunities for lower-energy cooling in homes, offices, schools and public spaces. 3D printing also enables customized structures and alternative material blends, potentially supporting more resource-efficient approaches to heat-resilient urban development.
- 來源
- Trend Hunter
- 發布
- 2026-08-10
- 品類
- Design
- 出處
- 3dprinting, tugraz.at