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May 9, 2026Earth-Science Reviews0 citationsOpen Access

Artificial dwelling mounds in Dutch wetlands: Regional archives of human-landscape interactions (500 BCE – Present)

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RBRoy van BeekCQCindy QuikHPH.J. Pierik

Key Points

  • This research investigates the role of dwelling mounds as archives of human behavior and adaptation in wetland areas from 500 BCE to present.
  • Conducted a national-scale inventory of dwelling mounds in the Netherlands, identifying almost 9000 structures.
  • Examined forcing agents for mound construction across various wetland settings, including climatic and geological factors.
  • Analyzed historical data on human-water interactions and changes in regional landscapes.
  • Identified approximately 9000 dwelling mounds, significantly more than previously expected.
  • Found that mound construction was influenced by rapid flooding events and gradual changes such as sea-level rise.
  • Demonstrated the potential of these mounds to inform future water adaptation strategies and heritage management.

Abstract

Human-made earthen mounds are known from wetland environments across the globe. Having served a wide variety of purposes, these archaeological mounds are frequently described as heavily understudied yet fragile archives of past human behaviour and paleoenvironments. Furthermore, they often still fulfil important roles in regional cultural identities and social memory. In this paper we focus on dwelling mounds, which are defined as deliberately raised anthropogenic mounds with a dwelling function, created in anticipation of floods and drainage issues in coastal and fluvial wetland areas. We present the first national-scale study of dwelling mounds in the Netherlands. Our inventory identified almost 9000 dwelling mounds, which was far more than expected. They were erected in a wide variety of wetland settings from the Iron Age (c. 500 BCE) onwards. Main forcing agents of mound construction operated on rapid episodic timescales including (1) coastal flooding and storm surges and (2) fluvial flooding and over gradual, continuous timescales including (3) shoreline shifts (e.g. due to regional sea-level rise or changing palaeogeography) and (4) peat/clay-on-peat subsidence. These forcing agents were active in different combinations and exhibited feedbacks with human landscape engineering. Both individual sites and entire wetland areas could follow highly diverse trajectories. Our results show the great potential of dwelling mounds as knowledge archives on past water adaptation strategies, which may inform future developments, and also urge a reassessment of current heritage management strategies.

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Cite This Study

Beek et al. (2026) studied this question.

synapsesocial.com/papers/69fed0abb9154b0b82877b91https://doi.org/10.1016/j.earscirev.2026.105511
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