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ASSESSING EFFECTS OF THERMAL LOADING ON THE STABILITY OF EMPLACEMENT DRIFTS

机译:评估热负荷对位移漂移稳定性的影响

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Thermal-mechanical analyses were performed to assess the effects of thermal loading on the stability of emplacement drifts used for nuclear waste disposal. The analyses focused on a U.S. Department of Energy design concept and the rock-mass properties for a potential Yucca Mountain repository. The design concept includes using forced ventilation to reduce the amount of waste-generated heat transmitted into the rock during the operational period. The analyses indicate that thermally induced stress during the forced-ventilation period would be insufficient to cause instability of the drifts. Thermal stresses, however, would increase rapidly after forced ventilation is terminated and would cause overstress of rock near the perimeter of the drifts. Such overstress would not cause instability if the drifts are provided with effective ground support. The overstress, however, would persist for a long time and indicates a potential for progressive spoliation of the drift perimeter after any installed ground support loses effectiveness. Progressive degradation of drifts and the accumulation of rock rubble inside the drift openings would result from such spoliation.
机译:进行了热机械分析,以评估热负荷对用于核废料处置的安置漂移的稳定性的影响。这些分析着重于美国能源部的设计概念以及潜在的丝兰山储存库的岩质属性。设计理念包括使用强制通风以减少在运营期间传递到岩石中的废物产生的热量。分析表明,强制通风期间的热应力不足以引起漂移的不稳定性。然而,在强制通风终止后,热应力会迅速增加,并会导致在漂移区附近的岩石过应力。如果为漂移提供有效的地面支撑,则这种过应力不会引起不稳定。但是,过应力会持续很长时间,并且表明在任何已安装的地面支撑物失去效力后,漂移周长可能会逐渐剥落。这种沉积会导致漂移的逐步退化和岩石在开口内的堆积。

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