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All Outputs (5)

How did that get there? Understanding sediment transport and accumulation rates in agricultural landscapes using the ESTTraP agent-based model (2019)
Journal Article
Kabora, T., Stump, D., & Wainwright, J. (2020). How did that get there? Understanding sediment transport and accumulation rates in agricultural landscapes using the ESTTraP agent-based model. Journal of Archaeological Science: Reports, 29, Article 102115. https://doi.org/10.1016/j.jasrep.2019.102115

The 15th–18th century CE site of Engaruka in Tanzania is often described as primarily comprising drystone agricultural terraces, but it is now known that many of these former farming plots are not terraces per se, but are instead sediment traps. Stra... Read More about How did that get there? Understanding sediment transport and accumulation rates in agricultural landscapes using the ESTTraP agent-based model.

Multispectral Contrast of Archaeological Features: A Quantitative Evaluation (2019)
Journal Article
Kalayci, T., Lasaponara, R., Wainwright, J., & Masini, N. (2019). Multispectral Contrast of Archaeological Features: A Quantitative Evaluation. Remote Sensing, 11(9), Article 913. https://doi.org/10.3390/rs11080913

This study provides an evaluation of spectral responses of hollow ways in Upper Mesopotamia. Hollow ways were used for the transportation of animals, carts, and other moving agents for centuries. The aim is to show how the success of spectral indices... Read More about Multispectral Contrast of Archaeological Features: A Quantitative Evaluation.

A low-cost bench-top research device for turbidity measurement by radially distributed illumination intensity sensing at multiple wavelengths (2019)
Journal Article
Kitchener, B., Dixon, S., Howarth, K., Parsons, A., Wainwright, J., Bateman, M., …Hewett, C. (2019). A low-cost bench-top research device for turbidity measurement by radially distributed illumination intensity sensing at multiple wavelengths. HardwareX (Oxford), 5, Article e00052. https://doi.org/10.1016/j.ohx.2019.e00052

Presented here is a new bench-top research device for the measurement of the optical turbidity of natural sediment-laden water samples. This prototype device employs 18 unique angular measurement positions and a variety of user-selectable LED light s... Read More about A low-cost bench-top research device for turbidity measurement by radially distributed illumination intensity sensing at multiple wavelengths.