Soil archives of a Fluvisol: subsurface analysis and soil history of the medieval city centre of Vlaardingen, the Netherlands – an integral approach
The medieval city of Vlaardingen (the Netherlands) was strategically located on the confluence of three rivers, the Maas, the Merwede, and the Vlaarding. A church of the early 8th century AD was already located here. In a short period of time, Vlaardingen developed in the 11th century AD into an int...
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doaj-80a85c725f1748e1b0af3373fa5aea562020-11-25T00:40:04ZengCopernicus PublicationsSOIL2199-39712199-398X2016-06-012227128510.5194/soil-2-271-2016Soil archives of a Fluvisol: subsurface analysis and soil history of the medieval city centre of Vlaardingen, the Netherlands – an integral approachS. Kluiving0T. de Ridder1M. van Dasselaar2S. Roozen3M. Prins4Dept. of Archaeology, Faculty of Humanities, Vrije Universiteit Amsterdam, De Boelelaan 1079, 1081 HV Amsterdam, the NetherlandsVLAK (Archaeology Dept), City of Vlaardingen, Hoflaan 43, 3134 AC Vlaardingen, the NetherlandsArnicon, Archeomedia 2908 LJ Capelle aan den IJssel, the NetherlandsDepartment of Earth Sciences, Faculty of Earth and Life Sciences, Vrije Universiteit Amsterdam, De Boelelaan 1085, 1081 HV Amsterdam, the NetherlandsDepartment of Earth Sciences, Faculty of Earth and Life Sciences, Vrije Universiteit Amsterdam, De Boelelaan 1085, 1081 HV Amsterdam, the NetherlandsThe medieval city of Vlaardingen (the Netherlands) was strategically located on the confluence of three rivers, the Maas, the Merwede, and the Vlaarding. A church of the early 8th century AD was already located here. In a short period of time, Vlaardingen developed in the 11th century AD into an international trading place and into one of the most important places in the former county of Holland. Starting from the 11th century AD, the river Maas repeatedly threatened to flood the settlement. The flood dynamics were registered in Fluvisol archives and were recognised in a multidisciplinary sedimentary analysis of these archives. <br><br> To secure the future of these vulnerable soil archives an extensive interdisciplinary research effort (76 mechanical drill holes, grain size analysis (GSA), thermo-gravimetric analysis (TGA), archaeological remains, soil analysis, dating methods, micromorphology, and microfauna) started in 2011 to gain knowledge on the sedimentological and pedological subsurface of the settlement mound as well as on the well-preserved nature of the archaeological evidence. Pedogenic features are recorded with soil description, micromorphological, and geochemical (XRF – X-ray fluorescence) analysis. The soil sequence of 5 m thickness exhibits a complex mix of "natural" as well as "anthropogenic" layering and initial soil formation that enables us to make a distinction between relatively stable periods and periods with active sedimentation. In this paper the results of this interdisciplinary project are demonstrated in a number of cross-sections with interrelated geological, pedological, and archaeological stratification. A distinction between natural and anthropogenic layering is made on the basis of the occurrence of the chemical elements phosphor and potassium. <br><br> A series of four stratigraphic and sedimentary units record the period before and after the flooding disaster. Given the many archaeological remnants and features present in the lower units, in geological terms it is assumed that the medieval landscape was submerged while it was inhabited in the 12th century AD. In reaction to a final submersion phase in the late 12th century AD, the inhabitants started to raise the surface of the settlement. Within archaeological terms the boundary between natural and anthropogenic layers is stratigraphically lower, so that in the interpretation of archaeologists, the living ground was dry during the 12th and the 13th centuries AD. In this discussion, the geological interpretation will be compared with alternative archaeological scenarios.http://www.soil-journal.net/2/271/2016/soil-2-271-2016.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
S. Kluiving T. de Ridder M. van Dasselaar S. Roozen M. Prins |
spellingShingle |
S. Kluiving T. de Ridder M. van Dasselaar S. Roozen M. Prins Soil archives of a Fluvisol: subsurface analysis and soil history of the medieval city centre of Vlaardingen, the Netherlands – an integral approach SOIL |
author_facet |
S. Kluiving T. de Ridder M. van Dasselaar S. Roozen M. Prins |
author_sort |
S. Kluiving |
title |
Soil archives of a Fluvisol: subsurface analysis and soil history of the medieval city centre of Vlaardingen, the Netherlands – an integral approach |
title_short |
Soil archives of a Fluvisol: subsurface analysis and soil history of the medieval city centre of Vlaardingen, the Netherlands – an integral approach |
title_full |
Soil archives of a Fluvisol: subsurface analysis and soil history of the medieval city centre of Vlaardingen, the Netherlands – an integral approach |
title_fullStr |
Soil archives of a Fluvisol: subsurface analysis and soil history of the medieval city centre of Vlaardingen, the Netherlands – an integral approach |
title_full_unstemmed |
Soil archives of a Fluvisol: subsurface analysis and soil history of the medieval city centre of Vlaardingen, the Netherlands – an integral approach |
title_sort |
soil archives of a fluvisol: subsurface analysis and soil history of the medieval city centre of vlaardingen, the netherlands – an integral approach |
publisher |
Copernicus Publications |
series |
SOIL |
issn |
2199-3971 2199-398X |
publishDate |
2016-06-01 |
description |
The medieval city of Vlaardingen (the Netherlands)
was strategically located on the confluence of three rivers,
the Maas, the Merwede, and the Vlaarding. A church of the early 8th century
AD was already located here. In a short period of time, Vlaardingen developed
in the 11th century AD into an international trading place and into one of
the most important places in the former county of Holland. Starting from the
11th century AD, the river Maas repeatedly threatened to flood the
settlement. The flood dynamics were registered in Fluvisol archives and were
recognised in a multidisciplinary sedimentary analysis of these archives.
<br><br>
To secure the future of these vulnerable soil archives an extensive
interdisciplinary research effort (76 mechanical drill holes, grain size
analysis (GSA), thermo-gravimetric analysis (TGA), archaeological remains,
soil analysis, dating methods, micromorphology, and
microfauna) started in 2011 to gain knowledge on the sedimentological and pedological
subsurface of the settlement mound as well as on the well-preserved nature of the
archaeological evidence. Pedogenic features are recorded with soil
description, micromorphological, and geochemical (XRF – X-ray fluorescence) analysis. The soil
sequence of 5 m thickness exhibits a complex mix of "natural" as well as
"anthropogenic" layering and initial soil formation that enables us to make
a distinction between relatively stable periods and periods with active
sedimentation. In this paper the results of this interdisciplinary project
are demonstrated in a number of cross-sections with interrelated geological,
pedological, and archaeological stratification. A distinction between natural
and anthropogenic layering is made on the basis of the occurrence of the
chemical elements phosphor and potassium.
<br><br>
A series of four stratigraphic and sedimentary units record the period before
and after the flooding disaster. Given the many archaeological remnants and
features present in the lower units, in geological terms it is assumed that
the medieval landscape was submerged while it was inhabited in the 12th
century AD. In reaction to a final submersion phase in the late 12th century
AD, the inhabitants started to raise the surface of the settlement. Within
archaeological terms the boundary between natural and anthropogenic layers is
stratigraphically lower, so that in the interpretation of archaeologists, the living ground was dry during the 12th and the 13th centuries
AD. In this discussion, the geological interpretation will be compared with
alternative archaeological scenarios. |
url |
http://www.soil-journal.net/2/271/2016/soil-2-271-2016.pdf |
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