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首页> 外文期刊>The European physical journal: Special topics >Observations on the spatio-temporal patterns of radon along the western fault of the Dead Sea Transform, NW Dead Sea
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Observations on the spatio-temporal patterns of radon along the western fault of the Dead Sea Transform, NW Dead Sea

机译:西北死海死海转变西部断裂带上的don的时空格局观察

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摘要

An extensive radon anomaly is developed along the western boundary fault of the Dead Sea Transform in the NW sector of the Dead Sea, extending 15-20 km north-south. The highest radon values occur in proximity to the fault scarp. Radon is measured, in gravel (depth 1.5-3 m) at sites located at a) on-fault positions, 1-30 meters east of the fault scarp, and b) off-fault positions located 600-800 the east. Prominent signals occur in the annual and daily periodicity bands, as well as non-periodic multi-day variations (2-20 days). Modulations occur among the annual variation and the multi-day and the daily signals, and between the multi-day and the daily signal. Dissimilar variation patterns occur at on-fault versus off-fault sites in the time domain, and in the relative amplitude of the daily periodicities. Variation patterns and their modulations are similar to those encountered in experimental simulations. It is concluded that: 1) above surface atmospheric influences can be excluded; 2) a remote above surface influence probably drives the periodic components in the annual and diurnal bands; 3) diurnal as well as the multi-day signals are modified and inter-modulated by near field geological (static) and geophysical (dynamic) influences. Systematically different influences are operating at on-fault versus off-fault positions, So far the natures of these near field influences are unidentified.
机译:沿死海西北部死海变换的西部边界断层,出现了广泛的ra异常,向北延伸了15至20公里。最高ra值出现在断层陡峭处附近。在以下位置的砾石(深度1.5-3 m)中测量:a)断层位置,断层陡坡以东1-30米,b)断层位置东部600-800。突出的信号出现在年度和每日周期性波段以及非周期性的多日变化(2-20天)中。在年度变化与多日和每日信号之间以及在多日与每日信号之间进行调制。在时域中,在故障时和故障时站点以及每日周期的相对幅度中,会出现不同的变化模式。变化模式及其调制类似于实验模拟中遇到的模式。结论是:1)可以排除地表大气的影响; 2)遥远的地表影响可能会驱动年和日波段的周期性成分; 3)日和多日信号受到近场地质(静态)和地球物理(动态)影响的修改和相互调制。系统上不同的影响作用在故障位置还是故障位置,到目前为止,这些近场影响的性质尚不清楚。

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