Late Pleistocene to Holocene sedimentary sequence and landform of the Nobi Plain, central Japan
Author:
Affiliation:
1. Department of Geography, Graduate School of Environmental Studies, Nagoya University
2. Department of Geography, Faculty of Letters, Hosei University
3. Ota Municipal High School
Publisher
The Geological Society of Japan
Subject
General Earth and Planetary Sciences,General Engineering,General Environmental Science
Link
https://www.jstage.jst.go.jp/article/geosoc/125/1/125_2018.0005/_pdf
Reference64 articles.
1. Carlson, A. E., 2013, The Younger Dryas Climate Event. In Elias S. A., ed., The Encyclopedia of Quaternary Science, vol. 3. Elsevier, Amsterdam, 126–134.
2. Clark, P. U., Dyke, A. S., Shakun, J. D., Carlson, A. E., Clark, J., Wohlfarth, B.,…McCabe, A. M., 2009, The Last Glacial Maximum. Science, 325, 710–714.
3. 大東憲二(Daito, K.), 2015, 濃尾平野の地盤沈下対策と地下水管理の現状(Current state of measures for land subsidence and groundwater control in the Nobi Plain). 地下水学会誌(Jour. Groundwater Hydrol.), 57, 9–17.
4. 春山成子・大矢雅彦(Haruyama, S. and Oya, M.), 1986, 地形分類を基礎とした庄内川, 矢作川の河成平野の比較研究(Comparative study on the fluvial plain of the Shonai and Yahagi rivers, central Japan, based on the geomorphological land classification). 地理評(Geogr. Rev. Japan), 59, 571–588.
5. 羽佐田紘大(Hasada, K.), 2015, GISを用いたボーリングデータ解析に基づく濃尾平野の3次元構造と堆積土砂量の復原(Reconstruction of three-dimensional stratigraphic architecture and sediment storage on the Nobi Plain based on borehole data analysis using GIS). 地理評(Geogr. Rev. Japan), 88, 118–137.
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