| 研究生: |
鄔德傳 De-Chan Wu |
|---|---|
| 論文名稱: |
緩衝材料熱傳導性質與放射性廢料處置場溫度效應 |
| 指導教授: |
張瑞宏
Jui-Hung Chang |
| 口試委員: | |
| 學位類別: |
碩士 Master |
| 系所名稱: |
工學院 - 土木工程學系 Department of Civil Engineering |
| 畢業學年度: | 89 |
| 語文別: | 中文 |
| 論文頁數: | 102 |
| 中文關鍵詞: | 廢料處置桶 、緩衝材料 、回填材料 、多重障壁 、地下處置法 |
| 外文關鍵詞: | waste containers, buffer material |
| 相關次數: | 點閱:7 下載:0 |
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研究內容首先針對實驗進行數值模擬,利用數值與實驗結果來進行分析與探討,以尋求適當之計算緩衝材料熱傳導係數的方法。
其次針對邊界情形(有無隔熱裝置)、熱阻效應、施加熱能、不同土樣等可能影響實驗量測結果之參數進行分析,用以尋求更佳之實驗模式。
最後進行一案例分析,此分析之目的在於了解不同緩衝材料會對處置場溫度消散有何程度之影響。
The study aims at determining the proper time interval to calculate the thermal conductivity of the buffer material, and using the actual heat conductivity of the sample known to evaluate the influence of different factors. The aim of these calculations was to develop the most appropriate test and evaluation method.
【1】Selvadurai, A.P.S., and Nguyen, T.S., “Scoping analyses of the coupled thermal-hydrological-mechanical behavior of the rock mass around a nuclear fuel waste repository,” Engineering Geology, Vol.47, pp.379-400, 1996.
【2】Farouki, O.T., “Thermal Properties of Soils,” Trans Tech Publications, 1986.
【3】Woodside, W., and Messmer, J.M., “Thermal conductivity of porous media,” Journal of Applied Physics, vol. 32, No. 9, 1961.
【4】Kahr, G., and Muller-von Moos, m., "Warmeleitfahigkeit von Bentonit Mx80 und von Montigel nach der Heizdrahtmethode,” NAGRA Technischer Bericht 82-06, 1982.
【5】Beziat, A., Dardaine, M. and Gabis, V., “Effect of compaction pressure and water content on the thermal conductivity of some natural clays,” Clays & Clays Minerals 36 (5), 1988.
【6】Knutsson, S., “On the thermal conductivity and thermal diffusivity of highly compacted bentonite,” SKB Technical Report 83-72, 1983.
【7】Radhakrishna, H. S., Chan, H. T., Crawford, A. M., and Lau, K. C., “Thermal and Physical Properties of Candidate Buffer-Backfill Material for a Nuclear Fuel Waste Disposal Vault,” Canadian Geotechnical Journal, Vol.26, pp.629-639, 1989.
參考文獻
【1】Selvadurai, A.P.S., and Nguyen, T.S., “Scoping analyses of the coupled thermal-hydrological-mechanical behavior of the rock mass around a nuclear fuel waste repository,” Engineering Geology, Vol.47, pp.379-400, 1996.
【2】Farouki, O.T., “Thermal Properties of Soils,” Trans Tech Publications, 1986.
【3】Woodside, W., and Messmer, J.M., “Thermal conductivity of porous media,” Journal of Applied Physics, vol. 32, No. 9, 1961.
【4】Kahr, G., and Muller-von Moos, m., "Warmeleitfahigkeit von Bentonit Mx80 und von Montigel nach der Heizdrahtmethode,” NAGRA Technischer Bericht 82-06, 1982.
【5】Beziat, A., Dardaine, M. and Gabis, V., “Effect of compaction pressure and water content on the thermal conductivity of some natural clays,” Clays & Clays Minerals 36 (5), 1988.
【6】Knutsson, S., “On the thermal conductivity and thermal diffusivity of highly compacted bentonite,” SKB Technical Report 83-72, 1983.
【7】Radhakrishna, H. S., Chan, H. T., Crawford, A. M., and Lau, K. C., “Thermal and Physical Properties of Candidate Buffer-Backfill Material for a Nuclear Fuel Waste Disposal Vault,” Canadian Geotechnical Journal, Vol.26, pp.629-639, 1989.