2011-01-012024-05-15https://scholars.lib.ntu.edu.tw/handle/123456789/664094摘要:善用太陽能製作開放吸附式冷氣,利用矽膠除濕輪將入氣除濕,隨後再以細霧噴入混合室進行降溫,達到降溫的目的。此系統將能部份取代溫室環控系統中的冷氣系統,以太陽能達到降低空氣溫度的目的、減少對現有能源的需求,達成節能減碳的目的。製作之開放吸附式冷氣模組亦可作為後續深入探討吸附式製冷操作參數的方便平台。 本年度將進行開放吸附式置冷的參數最佳化設計,探討參數包括:吸濕材料、吸濕輪厚度/ 吸濕時間、吸濕輪再生溫度、再生風量等、吸濕輪吸濕能力受環境溫濕度的影響。同時,進行開放吸附式製冷模組化設計規劃。除了將整理模組化設計,使其方便安裝使用,熱水出入介面設計得宜;另使得開放吸附式製冷模組得以並聯作動,提昇製冷風量。另將開放吸附製冷模組置於一小空間、密閉環控環境,進行開 放吸附式製冷之模擬環境驗證,檢視環境溫濕度變化對製冷模組性能之影響。最後選擇一小型溫室或植物工廠,將開放吸附式製冷模組運轉於其中,進行實場測試。檢視對能源節約上的成效。<br> Abstract: Ultilizing solar thermal energy to construct adsorption chiller, incoming air is dehumidified by silicon gel and enters the evaporation chamber to perform the evaporative cooling to achieve the cooling effect. The system is expected to replace the traditional air-conditioning system in greenhouses or plant factories. The cooling by solar thermal energy would decrease the usage of traditional energy. The creation of the solar thermal cooling will also be a good platform for future researches. This year, the optimal design, modulation design, and field tests will be performed to expand the performance and usage of the adsoprtion chilling module. Besides, the effects of ambient temperature and humidity of the adsorption chilling, and the effects of solar chilling on energy conservation will be explored.太陽能製冷吸附solar energycoolingadsoprtion農業機械與自動化研究-太陽能加熱降溫模組之研製