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fiReproxies: A computational model providing insight into heat-affected archaeological lithic assemblages

机译:fiReproxies:一种计算模型,可深入了解受热影响的考古石器组合

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摘要

Evidence for fire use becomes increasingly sparse the further back in time one looks. This is especially true for Palaeolithic assemblages. Primary evidence of fire use in the form of hearth features tends to give way to clusters or sparse scatters of more durable heated stone fragments. In the absence of intact fireplaces, these thermally altered lithic remains have been used as a proxy for discerning relative degrees of fire use between archaeological layers and deposits. While previous experimental studies have demonstrated the physical effects of heat on stony artefacts, the mechanisms influencing the proportion of fire proxy evidence within archaeological layers remain understudied. This fundamental study is the first to apply a computer-based model (fiReproxies) in an attempt to simulate and quantify the complex interplay of factors that ultimately determine when and in what proportions lithic artefacts are heated by (anthropogenic) fires. As an illustrative example, we apply our model to two hypothetical archaeological layers that reflect glacial and interglacial conditions during the late Middle Palaeolithic within a generic simulated cave site to demonstrate how different environmental, behavioural and depositional factors like site surface area, sedimentation rate, occupation frequency, and fire size and intensity can, independently or together, significantly influence the visibility of archaeological fire signals.
机译:人们回首过去的时间,越来越少有使用消防的证据。对于旧石器时代的组合尤其如此。以炉膛特征形式使用火的主要证据倾向于让位于更耐用的加热石块的簇状或稀疏散布。在没有完整壁炉的情况下,这些经过热改变的石器遗物已被用作识别考古层和沉积物之间相对使用火种程度的替代物。尽管先前的实验研究已经证明了热量对石质文物的物理影响,但仍未充分研究影响考古层中火代证证据比例的机制。这项基础研究是首次应用基于计算机的模型(fiReproxies),以尝试模拟和量化因素的复杂相互作用,这些因素最终决定了(人为的)火何时以及以何种比例加热石器物。作为一个说明性的例子,我们将模型应用于两个假想的考古学层面,这些层面反映了古石器时代中晚期晚期的冰川和冰川间条件,位于一个普通的模拟洞穴内,以展示不同的环境,行为和沉积因素,如场地表面积,沉积速率,占领频率,火的大小和强度会独立或共同影响考古火信号的可见性。

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