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The effect of rock particles and D2O replacement on the flow behaviour of ice

机译:岩石颗粒和D2O替代对冰的流动行为的影响

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摘要

Ice–rock mixtures are found in a range of natural terrestrial and planetary environments. To understand how flow processes occur in these environments, laboratory-derived properties can be extrapolated to natural conditions through flow laws. Here, deformation experiments have been carried out on polycrystalline samples of pure ice, ice–rock and D2O-ice–rock mixtures at temperatures of 263, 253 and 233 K, confining pressure of 0 and 48 MPa, rock fraction of 0–50 vol.% and strain-rates of 5 × 10−7 to 5 × 10−5 s−1. Both the presence of rock particles and replacement of H2O by D2O increase bulk strength. Calculated flow law parameters for ice and H2O-ice–rock are similar to literature values at equivalent conditions, except for the value of the rock fraction exponent, here found to be 1. D2O samples are 1.8 times stronger than H2O samples, probably due to the higher mass of deuterons when compared with protons. A gradual transition between dislocation creep and grain-size-sensitive deformation at the lowest strain-rates in ice and ice–rock samples is suggested. These results demonstrate that flow laws can be found to describe ice–rock behaviour, and should be used in modelling of natural processes, but that further work is required to constrain parameters and mechanisms for the observed strength enhancement.This article is part of the themed issue ‘Microdynamics of ice’.
机译:冰岩混合物存在于一系列自然的陆地和行星环境中。为了了解在这些环境中流动过程是如何发生的,可以通过流动定律将实验室衍生的特性外推至自然条件。在这里,已经对纯冰,冰-岩石和D2O-冰-岩石混合物的多晶样品进行了变形实验,温度分别为263、253和233 K,围压为0和48 MPa,岩石分数为0-50 vol 。%和5×10 −7 到5×10 −5 s -1 的应变率。岩石颗粒的存在和D2O替代H2O均可提高体积强度。在等效条件下,冰和H2O-冰-岩的流定律参数与文献值相似,不同之处在于岩石分数指数的值(此处为1)。D2O样品比H2O样品强1.8倍。与质子相比,氘核的质量更高在冰和冰-岩石样品中,在最低应变速率下,位错蠕变和晶粒尺寸敏感性变形之间逐渐过渡。这些结果表明,可以找到流动规律来描述冰岩行为,应该将其用于自然过程的建模,但是还需要进一步的工作来约束参数和机理,以观察到强度的增强。本文是主题的一部分发行“冰的微动力学”。

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