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Biomedical subjects

T P Burt

Publications and source records attributed to T P Burt.

2 recordsLinked to original sources

Impact of land drainage on peatland hydrology.

There is a long history of drainage of blanket peat but few studies of the long-term hydrological impact of drainage. This paper aims to test differences in runoff production processes between intact and drained blanket peat catchments and determine whether there have been any long-term changes in stream flow since drainage occurred. Hillslope runoff processes and stream discharge were measured in four blanket peat catchments. Two catchments were drained with open-cut ditches in the 1950s. Ditching originally resulted in shorter lag times and flashier storm hydrographs but no change in the annual catchment runoff efficiency. In the period between 2002 and 2004, the hydrographs in the drained catchments, while still flashy, were less sensitive to rainfall than in the 1950s and the runoff efficiency had significantly increased. Drains resulted in a distinctive spatial pattern of runoff production across the slopes. Overland flow was significantly lower in the drained catchments where throughflow was more dominant. In the intact peatlands, matrix throughflow produced by peat layers below 10 cm was rare and produced <1% of the runoff. However, in drained peatlands, matrix throughflow in deeper peat layers was common and provided around 23% of the runoff from gauged plots. Macropore flow, the density of soil piping, and pipeflow were significantly greater in drained peatlands than in intact basins. Gradual changes to peat structure could explain the long-term changes in river flow, which are in addition to those occurring in the immediate aftermath of peatland drainage.

England↗

Monitoring change in hydrological systems.

Monitoring is the process by which we keep the behaviour of the environment in view, providing essential information on how systems are changing and how fast, and allows us to learn to adjust what we are doing to get the best out of the system. This paper reviews the ways in which long-term study of the natural environment can be achieved. Three hydrological examples are then presented: nitrate leaching in a small agricultural catchment in south west England; the impact of drought on the peat-covered headwaters of the River Tees in northern England; and the impact of clear-felling on forest hydrology and nutrient export in the southern Appalachians. Monitoring programmes, if well designed and properly maintained, can provide important evidence of environmental change, revealing unexpected patterns and stimulating experimental research. The existence of long, reliable data sets considerably increases our ability to make informed decisions about the way in which we manage our river catchments.

Agriculture↗