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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Calibrating climate-δ18O regression models for the interpretation of high-resolution speleothem δ18O time series
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Calibrating climate-δ18O regression models for the interpretation of high-resolution speleothem δ18O time series

机译:校准气候-δ18 o的回归模型高分辨率的解释洞穴堆积物δ18 o时间序列

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摘要

Providing estimates of past climate changes on interannual–millenial timescales requires suitable regression models between climate and climate proxies. Many proxies appear to show relationships with climate that are timescale dependent. Any proxy-climate model should be able to replicate the major patterns that are observed at multiple timescales. Here we develop a new climate-isotope regression model for speleothems from a middle latitude site. In the low to middle latitudes, daily variation in precipitation isotopes (within individual months) is largely negatively correlated with daily rainfall amount. On interdecadal timescales, though, this relationship appears to be nonstationary. These two points provide a theoretical basis for a new climate-isotope regression model in which the slope and the intercept of a δ 18O day –P day line for a given month are modulated by organized patterns of climate variability, such as the extratropical zonal waves (including the annular modes). In constructing this new regression model, we show how daily precipitation–δ 18O relationships can be estimated using only monthly δ 18O data and daily rainfall amounts. The new regression model provides a consistent picture of 18O variability over a range of timescales, and this has not been the case with any previous climate-isotope regression model.
机译:提供过去的气候变化的估计interannual-millenial时间表需要合适的气候和之间的回归模型气候代理。时间尺度与气候的关系相关的。复制的主要模式在多个时间尺度。汪教授climate-isotope回归模型中纬度的网站。纬度,在降水日变化同位素(个人个月内)很大程度上每日降雨量呈负相关。在年代际时间尺度上,不过,这个似乎不稳定的关系。一个新的两个点提供了理论依据climate-isotope回归模型中斜率和截距的δ18 o - p天线是通过控制调节给定月组织气候变化的模式,如温带地带性波(包括环形模式)。模型,我们表明每日降水-δ18 o每月只能估计使用的关系δ18 o数据和每天的降雨量。回归模型提供了一个一致的照片在各种时间尺度18 o可变性,这与以往任何不是这样climate-isotope回归模型。

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