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Evaluation of cooling effects of crushed rock under sand-filling and climate warming scenarios on the Tibet Plateau

机译:青藏高原填沙和气候变暖情景下碎石的降温效果评价

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Crushed rock has been applied to cool the permafrost foundation on the Tibet Plateau. It is facing the challenges of sand-filling and climate warming. Desertification and climate warming are a definite trend on the Tibet Plateau, which has affected the permafrost and infrastructures. This study investigated the influence of sand-filling and climate warming on the cooling effect of crushed rock on the Tibet Plateau, on the basis of a coupled finite element model of convective heat transfer and heat conduction with phase change. The model is calibrated by field measurements. The field experiment and numerical simulation reveal that natural convection in rock layer only occurs in winter season. With the increasing thickness of sand in rock layer, the critical temperature difference between the sand-free layer increases, and the Ra number decreases, and the natural convection intensity weakens gradually. At the climate warming rate of 0.052 degrees C a(-1), the cooling effect of rock layer can counteract the negative effect of climate warming and raise the permafrost table for about the former 20 years. However, the permafrost will eventually degrade continuously, which means the crushed-rock can't be applied to maintain the permafrost foundation stability anymore under these conditions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:碎石已被用于冷却青藏高原的多年冻土基础。它正面临着充沙和气候变暖的挑战。荒漠化和气候变暖是西藏高原的必然趋势,已经影响了多年冻土和基础设施。在对流换热与相变热传导耦合有限元模型的基础上,研究了填沙和气候变暖对碎石在青藏高原降温效果的影响。该模型通过现场测量进行校准。现场实验和数值模拟表明,岩石层的自然对流仅在冬季发生。随着岩层中砂层厚度的增加,无砂层之间的临界温差增大,Ra值减小,自然对流强度逐渐减弱。在0.052摄氏度a(-1)的气候变暖速率下,岩石层的冷却作用可以抵消气候变暖的负面影响,并提高约20年的永久冻土表。但是,多年冻土最终将持续退化,这意味着在这些条件下,碎石将不再可用于保持多年冻土基础的稳定性。 (C)2015 Elsevier Ltd.保留所有权利。

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