Sampling density and date influence spatial representation of tree ring reconstructions

Justin T. Maxwell, G. Harley, T. Matheus, B. Strange, Kayla Van Aken, Tsun Fung Au, J. Bregy
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Abstract

Abstract. Our understanding of the natural variability of hydroclimate before the instrumental period (ca. 1900 in the United States; US) is largely dependent on tree-ring-based reconstructions. Large-scale soil moisture reconstructions from a network of tree-ring chronologies have greatly improved our understanding of the spatial and temporal variability in hydroclimate conditions, particularly extremes of both drought and pluvial (wet) events. However, certain regions within these large-scale reconstructions in the US have a sparse network of tree-ring chronologies. Further, several chronologies were collected in the 1980s and 1990s, thus our understanding of the sensitivity of radial growth to soil moisture in the US is based on a period that experienced multiple extremely severe droughts and neglects the impacts of recent, rapid global change. In this study, we expanded the tree-ring network of the Ohio River Valley in the US, a region with sparse coverage. We used a total of 72 chronologies across 15 species to examine how increasing the density of the tree-ring network influences the representation of reconstructing the Palmer Meteorological Drought Index (PMDI). Further, we tested how the sampling date influenced the reconstruction models by creating reconstructions that ended in the year 1980 and compared them to reconstructions ending in 2010 from the same chronologies. We found that increasing the density of the tree-ring network resulted in reconstructed values that better matched the spatial variability of instrumentally recorded droughts and to a lesser extent, pluvials. By sampling tree in 2010 compared to 1980, the sensitivity of tree rings to PMDI decreased in the southern portion of our region where severe drought conditions have been absent over recent decades. We emphasize the need of building a high-density tree-ring network to better represent the spatial variability of past droughts and pluvials. Further, chronologies on the International Tree-Ring Data Bank need updating regularly to better understand how the sensitivity of tree rings to climate may vary through time.
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采样密度和采样日期影响树木年轮重建的空间表征
摘要我们对仪器测量期(1900年左右)之前美国水文气候自然变率的认识;美国)在很大程度上依赖于基于树木年轮的重建。基于树木年轮年表的大规模土壤湿度重建极大地提高了我们对水文气候条件时空变化的理解,特别是对极端干旱和雨(湿)事件的理解。然而,在美国这些大规模重建的某些地区有一个稀疏的树木年轮年表网络。此外,在20世纪80年代和90年代收集了几个年表,因此我们对美国径向生长对土壤湿度敏感性的理解是基于经历了多次极端严重干旱的时期,而忽略了最近快速的全球变化的影响。在这项研究中,我们扩展了美国俄亥俄河谷的树木年轮网络,这是一个覆盖稀疏的地区。我们使用了15个物种的72种年表来研究树木年轮网络密度的增加如何影响重建帕尔默气象干旱指数(PMDI)的表现。此外,我们通过创建1980年结束的重建来测试采样日期如何影响重建模型,并将其与来自相同年表的2010年结束的重建进行比较。我们发现,增加树木年轮网络的密度导致重建值更好地匹配仪器记录的干旱的空间变异性,并在较小程度上匹配雨淋。与1980年相比,2010年取样的树木年轮对PMDI的敏感性在近几十年来没有严重干旱条件的南部地区有所下降。为了更好地反映过去干旱和雨淋的空间变异性,需要建立高密度的树轮网络。此外,需要定期更新国际树木年轮数据库的年表,以便更好地了解树木年轮对气候的敏感性如何随时间变化。
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