从社会生态角度了解佩加蒙微型地区的地貌动力学

F. Becker, Daniel Knitter, Andreas Victor Walser, B. Ludwig, Murat Tozan, B. Schütt, Felix Pirson
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摘要

我们根据维也纳学派的社会生态模式,采用系统的跨学科方法,对佩加蒙古代大都市(安纳托利亚西部)及其微观区域进行了更加细致和多层面的了解。佩加蒙城是古代城市文化的 "指导化石 "之一。我们介绍了如何对社会生态模型进行调整和讨论,以适应考古学的需要和环境。在关注地貌动力学的同时,我们采用多种方法对人类与环境互动的某些方面进行概念化和模型化,并整合了自然地理学、考古学、建筑考古学(Bauforschung)和古代史的数据。该模型包括佩加蒙社会新陈代谢的几个方面,首先是环境的承载能力和人口统计,包括人口增长和作为对自然的积极投资的劳动力。在该模型中,地貌动力学被视为与社会新陈代谢相关的主要 "事件"(例如,与城市扩张相关的微区域侵蚀/沉积加剧)。有了社会生态模型,就有可能--而且必须--将人类与环境互动的感知和表现纳入其中,例如,行政管理模式和宗教习俗或建筑和已建基础设施(如梯田、河岸加固、分段梯田和分段桥梁)。地貌动力学还涉及对环境感知的各个方面,但迄今所知的有关佩加蒙的古文献中没有这方面的记载。同时,该模型在组织、构建和交流跨学科合作与讨论方面的重要性也得到了强调。
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Understanding geomorphodynamics in the Pergamon micro-region from a socio-ecological perspective
A systematic interdisciplinary approach based on the socio-ecological model of the Vienna school has been adopted to achieve a more nuanced and multifaceted understanding of the ancient metropolis of Pergamon (western Anatolia) and its micro-region. The city of Pergamon ranks among the ‘guiding fossils’ of urban culture in antiquity. We describe how the socio-ecological model is subject to adaptation and discussion to fit the needs and circumstances of archaeology. In focussing on geomorphodynamics, we use several approaches to conceptualise and model selected aspects of human-environment interactions, integrating data from physical geography, archaeology, building archaeology (Bauforschung) and ancient history. The model includes several dimensions of the social metabolism of Pergamon, first and foremost the carrying capacity of the environment and demographics, comprising population increase and labour as an active investment in nature. Geomorphodynamics are regarded as major ‘events’ in the model, related to the social metabolism (e.g. increased erosion/deposition in the micro-region in relation to urban sprawl). With the social-ecological model, it is possible – and becomes imperative – to include the perception and representation of human-environment interactions manifested in, for example, administrative patterns and religious practices or architecture and built infrastructure (such as terraces, riverbank stabilisation, substraction terraces and substraction bridges). Geomorphodynamics also involve various aspects of the perception of the environment, though these are not recorded in ancient texts on Pergamon known to date. Concurrently, the importance of the model in organising, structuring, and communicating interdisciplinary collaboration and discourse is highlighted.
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