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Bajpai, R.K.; Verma, A.K.; Maheshwar, Sachin, E-mail: rkbajpai@barc.gov.in
Proceedings of the twentieth DAE-BRNS symposium on thermal analysis: book of abstracts2016
Proceedings of the twentieth DAE-BRNS symposium on thermal analysis: book of abstracts2016
AbstractAbstract
[en] Soft rocks like argillites/shales are under consideration worldwide as host rock for geological disposal of vitrified as well as spent fuel nuclear waste. The near field around disposed waste canister at 400-500m depth witnesses a complex heat field evolution due to varying thermal characteristics of rocks, coupling with hydraulic processes and varying intensity of heat flux from the canister. Smooth heat dissipation across the rock is desirable to avoid buildup of temperature beyond design limit (100 °C) and resultant micro fracturing due to thermal stresses in the rocks and intervening buffer clay layers. This also causes enhancement of hydraulic conductivity of the rocks, radionuclide transport and greater groundwater ingress towards the canister. Hence heat evolution modeling constitutes an important part of safety assessment of geological disposal facilities
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Agarwal, Renu; Jat, Ram Avtar (Product Development Division, Bhabha Atomic Research Centre, Mumbai (India)) (eds.); Tyagi, Deepak; Varma, Salil; Bharadwaj, Shyamala (Chemistry Division, Bhabha Atomic Research Centre, Mumbai (India)) (eds.); Indian Thermal Analysis Society, Mumbai (India); Department of Physics, Indian Institute of Technology, Banaras Hindu University, Varanasi (India); 448 p; 2016; p. 141; THERMANS-2016: 20. DAE-BRNS symposium on thermal analysis; Varanasi (India); 18-20 Jan 2016; 2 refs., 1 fig.
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Book
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Conference
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