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頁籤選單縮合
題 名 | 核二廠空調冷凝水對於放射性廢液飼入量之影響=The Effect of HVAC Condensate on Liquid Radwaste Input in Kuosheng Nuclear Power Plant |
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作 者 | 吳慶謨; 溫冬珍; 陳蜀瓊; 徐自生; 沈四杰; | 書刊名 | 台電工程月刊 |
卷 期 | 581 1997.01[民86.01] |
頁 次 | 頁21-30 |
分類號 | 449.8 |
關鍵詞 | 通風空調; 集水坑; 放射性廢液; 空調冷凝水; 放射性廢液飼入量; Heating, ventilating and air conditioning; HVAC; Sump; Liquid radwaste; Air conditioning condensate; Liquid radwaste input; |
語 文 | 中文(Chinese) |
中文摘要 | 本報告係「核二廠放射性廢液最適量之研究評估計畫」中之一部份,主要目的是 要探討二廠通風空調系統 (HVAC) 之冷凝水對於放射性廢液飼入量之影響,作為減低廢液量 之依據及整體廢液飼入量評估之參考。由於臺灣地處亞熱帶,氣候溫暖潮濕,空調冷凝水量 量較 FSAR 所依據之乾冷大陸型地區為高。而空調冷凝水大部份排入收集槽中,增加了液體 放射性廢料之飼入量,實際量測各廠房之空調冷凝水結果顯示汽機廠房冷凝水量最高,而反 應爐廠房居次,燃料廠房再次之。而量測之冷凝水量隨季節性差異變化頗大。輔助廠房空調 設備雖多,但冷凝水總量不大。 廢料廠房則季節性變化更大,在乾冷時少到 227GPD,而在 溫濕季節多達 3744GPD。 整廠之總冷凝水量最高達 15,652 GPD,超過 FSAR 建議廢液飼入 總量 (76,520GPD) 之 20 ℅。 |
英文摘要 | This report is a part of the "Evaluation of Liquid Radwaste Input for Kuosheng Nuclear Power Plant" project. Most of the condensate generated from HVAC system is discharged into the collector tank of radwaste treatment system as a part of the liquid radwaste input. Since Taiwan is located at subtropical area with warm and damp weather, the quantity of HVAC condensate can be large and inportant compared with continental weather area where FSAR's suggested value was based on. The present study concentrated on measuring the quantity of HVAC condensate of different buildings. The results indicate that the turbine building has the largest quantity of HVAC condensate, reactir building the second and fuel storage building the third. The measured HVAC condensate changed with change of seasons. Although there are HVAC systems in the auxiliary building, but very little condensate has been observed. As for the radwaste building, the HVAC condensate gave the minimum input of 227GPD in dry and cool month of December and the maximum input of 3,774GDP in damp and warm month of June. The total average input of HVAC condensate is about 15,625GPD which is over 20 ℅ of the suggested liquid radwaste input value of 76,520GPD on FSAR. |
本系統中英文摘要資訊取自各篇刊載內容。