碩士 === 國立中央大學 === 土木工程研究所 === 99 === Nuclear energy power generation is major in Taiwan. But the spent fuel will produce higher temperature in nuclear power station. Deep geological disposal used worldwide for radioactive spent fuel, which needs to be completely isolated form human life cycle. Based...

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Main Authors: Mei-yin Wang, 王梅因
Other Authors: Jui-Hung Chang
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/83708002080644933458
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spelling ndltd-TW-099NCU050150402015-10-30T04:10:20Z http://ndltd.ncl.edu.tw/handle/83708002080644933458 無 核廢料地下處置場之岩石材料參數對工程障壁飽和度影響分析 Mei-yin Wang 王梅因 碩士 國立中央大學 土木工程研究所 99 Nuclear energy power generation is major in Taiwan. But the spent fuel will produce higher temperature in nuclear power station. Deep geological disposal used worldwide for radioactive spent fuel, which needs to be completely isolated form human life cycle. Based upon the concept of the deep disposal method. Our study uses finite element method and conducts analysis of the coupled thermo-hydro-mechanical calculations. The heat conduction analysis uses the Fourier’s law of heat conduction to obtain the temperature field. The temperature diffusion rate is consequently increased. Hydraulic calculation uses Darcy’s law, generalized Hooke’s law and effective stress theory. In addition of considering the size of repository, initial condition and boundary condition of the internal paper. Consider the internal source, we used the buffer material is Zhishin clay. The effect due to water saturation is discussed and compared with experiment results of materials. After the completion of the emplacement, filling and sealing, the invasion of the groundwater is not avoidable. The hydraulic conductivities of materials and pore pressure boundary condition will influence the rate of saturation. The study directed at the influences of the saturation histories on the hydro conductivity of the disposal. Jui-Hung Chang 張瑞宏 2011 學位論文 ; thesis 85 zh-TW
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description 碩士 === 國立中央大學 === 土木工程研究所 === 99 === Nuclear energy power generation is major in Taiwan. But the spent fuel will produce higher temperature in nuclear power station. Deep geological disposal used worldwide for radioactive spent fuel, which needs to be completely isolated form human life cycle. Based upon the concept of the deep disposal method. Our study uses finite element method and conducts analysis of the coupled thermo-hydro-mechanical calculations. The heat conduction analysis uses the Fourier’s law of heat conduction to obtain the temperature field. The temperature diffusion rate is consequently increased. Hydraulic calculation uses Darcy’s law, generalized Hooke’s law and effective stress theory. In addition of considering the size of repository, initial condition and boundary condition of the internal paper. Consider the internal source, we used the buffer material is Zhishin clay. The effect due to water saturation is discussed and compared with experiment results of materials. After the completion of the emplacement, filling and sealing, the invasion of the groundwater is not avoidable. The hydraulic conductivities of materials and pore pressure boundary condition will influence the rate of saturation. The study directed at the influences of the saturation histories on the hydro conductivity of the disposal.
author2 Jui-Hung Chang
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Mei-yin Wang
王梅因
author Mei-yin Wang
王梅因
spellingShingle Mei-yin Wang
王梅因

author_sort Mei-yin Wang
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publishDate 2011
url http://ndltd.ncl.edu.tw/handle/83708002080644933458
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