扎卡普火山高地古代农业系统和人口统计的演变:基于地质考古学和考古地理学的模型

Pub Date : 2023-04-19 DOI:10.1017/s0956536122000013
Antoine Dorison, C. Siebe
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引用次数: 2

摘要

在最近的激光雷达飞行在危地马拉和墨西哥发现的众多考古遗迹中,农业特征最为丰富。今天,考古学家不得不在农业环境拨款的方法和评估方面修改他们的范式。墨西哥西部的萨卡普马尔帕斯就是一个例子。除了在该地区有充分记录的后古典主义城市中心附近发现了大量的新古典主义占领外,激光雷达图像还揭示了一个经过深刻修改的农业景观,从而极大地改变了我们对这个熔岩流复合体中人类定居的理解。本研究以马尔帕斯北部为重点,使用考古地理和土壤科学方法来评估古代农业系统及其演变。我们结合传统的实地调查技术和激光雷达数据解释,更新了该地区的考古和土壤地图。这使我们能够确定居住区和广泛的相关农业特征,以适应火山土壤的多样性和农艺挑战。我们进一步实施了一个生产-消费模型,以重建从新古典主义到后古典主义中期的农业战略,从自力更生到超地方农业投入的必要性,这可能预示着塔拉斯坎州的贡品制度。
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Evolution of ancient farming systems and demography in the volcanic highlands of Zacapu: A model drawn from Geoarchaeology and archaeogeography
Among the numerous archaeological remains that recent LiDAR flights revealed in Guatemala and Mexico, agrarian features are the most abundant. Archaeologists today are compelled to revise their paradigms in terms of methodology and assessment of environmental appropriation for agriculture. The Malpaís de Zacapu in west Mexico is one example. Besides the discovery of a substantial Epiclassic occupation near the well-documented Postclassic urban centers of the area, LiDAR imagery brought to light a deeply modified agrarian landscape and thereby dramatically changed our understanding of human settlement in this lava flows complex. Focusing on the northern part of the Malpaís, this study uses archaeogeographical and soil science methods to assess ancient farming systems and their evolution. We updated the archaeological and soil maps of the area, combining traditional field survey techniques and LiDAR-derived data interpretation. This allowed us to identify residential zones and a wide range of associated agrarian features adapted to the variety and agronomic challenges of volcanic soils. We further implemented a production-consumption model to reconstruct agricultural strategies from the Epiclassic to the Middle Postclassic period, from self-reliance to the necessity of supra-local agricultural inputs, possibly foreshadowing the Tarascan state tribute system.
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