...
首页> 外文期刊>Geomorphology >High-frequency rock temperature data from hyper-arid desert environments in the Atacama and the Antarctic Dry Valleys and implications for rock weathering
【24h】

High-frequency rock temperature data from hyper-arid desert environments in the Atacama and the Antarctic Dry Valleys and implications for rock weathering

机译:来自阿塔卡马和南极干旱谷的高干旱沙漠环境的高频岩石温度数据及其对岩石风化的影响

获取原文
获取原文并翻译 | 示例
           

摘要

In desert environments with low water and salt contents, rapid thermal variations may be an important source of rock weathering. We have obtained temperature measurements of the surface of rocks in hyper-arid hot and cold desert environments at a rate of 1 /s over several days. The values of temperature change over 1-second intervals were similar in hot and cold deserts despite a 30℃ difference in absolute rock surface temperature. The average percentage of the time dT/dt>2℃/min was ~8±3%, >4℃/min was 1 ± 0.9%, and >8℃/min was 0.02±0.03%. The maximum change over a 1-second interval was -10 ℃/min. When sampled to simulate data taken over intervals longer than 1 s, we found a reduction in time spent above the 2 ℃/min temperature gradient threshold. For 1-minute samples, the time spent above any given threshold was about two orders of magnitude lower than the corresponding value for 1 -second sampling. We suggest that a rough measure of efficacy of weathering as a function of frequency is the product of the percentage of time spent above a given threshold value multiplied by the damping depth for the corresponding frequency. This product has a broad maximum for periods between 3 and 10 s.
机译:在水分和盐分含量低的沙漠环境中,快速的热变化可能是岩石风化的重要来源。我们已经在数天之内以1 / s的速率获得了在高干旱热沙漠和冷沙漠环境中岩石表面的温度测量值。尽管绝对岩石表面温度相差30℃,但在炎热和寒冷的沙漠中,在1秒间隔内的温度变化值相似。 dT / dt> 2℃/ min的平均时间百分比为〜8±3%,> 4℃/ min为1±0.9%,> 8℃/ min为0.02±0.03%。在1秒的时间间隔内最大变化为-10℃/ min。进行采样以模拟超过1 s的时间间隔内的数据时,我们发现花费在2℃/ min温度梯度阈值以上的时间减少了。对于1分钟的采样,花费在任何给定阈值之上的时间比1秒采样的相应值低大约两个数量级。我们建议,将风化功效作为频率的函数的粗略度量是在给定阈值之上花费的时间百分比乘以相应频率的阻尼深度的乘积。该产品的最大持续时间为3到10 s。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号