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首页> 外文期刊>Climate of the Past Discussions >A first chronology for the North Greenland Eemian Ice Drilling (NEEM) ice core
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A first chronology for the North Greenland Eemian Ice Drilling (NEEM) ice core

机译:北格陵兰冰冰钻(Neem)冰芯的第一个年表

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A stratigraphy-based chronology for the North Greenland Eemian Ice Drilling (NEEM) ice core has been derived by transferring the annual layer counted Greenland Ice Core Chronology 2005 (GICC05) and its model extension (GICC05modelext) from the NGRIP core to the NEEM core using 787 match points of mainly volcanic origin identified in the electrical conductivity measurement (ECM) and dielectrical profiling (DEP) records. Tephra horizons found in both the NEEM and NGRIP ice cores are used to test the matching based on ECM and DEP and provide five additional horizons used for the timescale transfer. A thinning function reflecting the accumulated strain along the core has been determined using a Dansgaard–Johnsen flow model and an isotope-dependent accumulation rate parameterization. Flow parameters are determined from Monte Carlo analysis constrained by the observed depth-age horizons. In order to construct a chronology for the gas phase, the ice age–gas age difference (Δage) has been reconstructed using a coupled firn densification-heat diffusion model. Temperature and accumulation inputs to the Δage model, initially derived from the water isotope proxies, have been adjusted to optimize the fit to timing constraints from δ15N of nitrogen and high-resolution methane data during the abrupt onset of Greenland interstadials. The ice and gas chronologies and the corresponding thinning function represent the first chronology for the NEEM core, named GICC05modelext-NEEM-1. Based on both the flow and firn modelling results, the accumulation history for the NEEM site has been reconstructed. Together, the timescale and accumulation reconstruction provide the necessary basis for further analysis of the records from NEEM.
机译:通过将每年层数(GICC05)及其模型延伸(GICC05Modelext)转移到Neem Core,通过将年度层数(GICC05)及其模型延伸(GICC05ModeLext)转移到Neem Core,通过将北方格林核心年表2005(GICC05)及其模型延伸(GICC05Modelext)转移到Neem Core来源787匹配主要在电导率测量(ECM)和介电分析(DEP)记录中识别的火山原产地。在NEEM和NGRIP冰芯中发现的Tephara Horizo​​ons用于测试基于ECM和DEP的匹配,并提供用于时间尺度转移的五个额外的视野。已经使用Dansgaard-Johnsen流程模型和同位素依赖性累积率参数化确定反映沿核心沿核心的累积应变的稀释功能。从受到观察到的深度视野的蒙特卡罗分析确定流量参数。为了构建用于气相的年表,使用耦合的FIRN致密化 - 热扩散模型重建了冰河时代差(ΔAge)。已经调整了ΔAge模型的温度和累积输入,最初衍生自水同位素代理,以优化在格陵兰博物馆突然发作期间从氮气和高分辨率甲烷数据Δ15N的拟合到时序约束。冰和气体时间顺序和相应的稀疏函数代表了Neem核心的第一个年代学,名为GICC05Modelext-Neem-1。基于流量和FIRN建模结果,重建了NEEM网站的累积历史记录。共同,时间尺度和累积重建为进一步分析了Neem的记录提供了必要的基础。
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