Sediment and nutrient budgets are inherently dynamic: evidence from a long-term study of two subtropical reservoirs
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Authors
O'Brien, Katherine R.
Weber, Tony R.
Leigh, Catherine
Burford, Michele A.
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European Geosciences Union
Abstract
Accurate reservoir budgets are important for un-
derstanding regional fluxes of sediment and nutrients. Here
we present a comprehensive budget of sediment (based on
total suspended solids, TSS), total nitrogen (TN) and total
phosphorus (TP) for two subtropical reservoirs on rivers with
highly intermittent flow regimes. The budget is completed
from July 1997 to June 2011 on the Somerset and Wiven-
hoe reservoirs in southeast Queensland, Australia, using a
combination of monitoring data and catchment model pre-
dictions. A major flood in January 2011 accounted for more
than half of the water entering and leaving both reservoirs
in that year, and approximately 30 % of water delivered to
and released from Wivenhoe over the 14-year study period.
The flood accounted for an even larger proportion of total
TSS and nutrient loads: in Wivenhoe more than one-third
of TSS inputs and two-thirds of TSS outputs between 1997
and 2011 occurred during January 2011. During non-flood
years, mean historical concentrations provided reasonable
estimates of TSS and nutrient loads leaving the reservoirs.
Calculating loads from historical mean TSS and TP concen-
trations during January 2011, however, would have substan-
tially underestimated outputs over the entire study period,
by up to a factor of 10. The results have important implica-
tions for sediment and nutrient budgets in catchments with
highly episodic flow. First, quantifying inputs and outputs
during major floods is essential for producing reliable long-
term budgets. Second, sediment and nutrient budgets are dy-
namic, not static. Characterizing uncertainty and variability
is therefore just as important for meaningful reservoir bud-
gets as accurate quantification of loads
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Hydrology and Earth System Sciences
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Open Access