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Autogenic geomorphic processes determine the resolution and fidelity of terrestrial paleoclimate records

机译:自生的地貌过程决定着陆古气候记录的分辨率和保真度

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摘要

Terrestrial paleoclimate records rely on proxies hosted in alluvial strata whose beds are deposited by unsteady and nonlinear geomorphic processes. It is broadly assumed that this renders the resultant time series of terrestrial paleoclimatic variability noisy and incomplete. We evaluate this assumption using a model of oscillating climate and the precise topographic evolution of an experimental alluvial system. We find that geomorphic stochasticity can create aliasing in the time series and spurious climate signals, but these issues are eliminated when the period of climate oscillation is longer than a key time scale of internal dynamics in the geomorphic system. This emergent autogenic geomorphic behavior imparts regularity to deposition and represents a natural discretization interval of the continuous climate signal. We propose that this time scale in nature could be in excess of 104 years but would still allow assessments of the rates of climate change at resolutions finer than the existing age model techniques in isolation.
机译:陆地古气候记录依赖于冲积层中的代理,这些冲床的床层是由不稳定的和非线性的地貌过程沉积而成的。广泛假设这使地面古气候变异的时间序列变得嘈杂和不完整。我们使用振荡气候模型和实验性冲积系统的精确地形演变来评估该假设。我们发现,地貌随机性会在时间序列和虚假气候信号中造成混叠,但是当气候振荡周期长于地貌系统内部动力学的关键时间尺度时,这些问题就消除了。这种新兴的自生地貌行为赋予沉积规律性,并代表了连续气候信号的自然离散间隔。我们建议,这个时间尺度实际上可以超过10 4 年,但仍允许以比现有的单独的年龄模型技术更好的分辨率评估气候变化率。

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