- Title
- Bedload yields for sand-bed streams in the Ngarradj Creek catchment, Northern Territory, Australia
- Creator
- Erskine, Wayne D.; Saynor, Mike J.
- Relation
- Hydrological Processes Vol. 29, Issue 17, p. 3767-3778
- Publisher Link
- http://dx.doi.org/10.1002/hyp.10456
- Publisher
- John Wiley & Sons
- Resource Type
- journal article
- Date
- 2015
- Description
- Bedload yields were calculated by 39 methods at the East Tributary gauge, nine methods at Upper Swift Creek gauge and 11 methods at Swift Creek gauge in the Ngarradj Creek catchment in northern Australia. These methods involved combining various significant bedload rating curves determined for a measured bedload data set for a 4-year period with either the hourly or daily hydrographs or flow duration curves for the same period, 1 September 1998 to 31 August 2002. Bedload ratings were both statistically significant (p≤0.05) and explained at least 60% of the variance in bedload flux. Bias corrections were used with all methods based on log₁₀-transformed ratings. Estimated mean annual bedload yields varied by three orders of magnitude at the East Tributary gauge and by two orders of magnitude at Upper Swift Creek and Swift Creek gauges. Hourly discharges usually produced higher estimated yields than daily discharges. The bedload rating-flow duration curve technique overestimates yields and bias correction methods always produce even higher yields. Ratings using both immersed bedload weight and adjusted immersed bedload weight always under-predicted yields because they contain an implicit threshold of motion condition that is at least four times greater than that predicted by Bagnold's threshold equation. Such a result questions the applicability of Bagnold's threshold equation to the Ngarradj Creek catchment. The best estimates of mean annual bedload yield at East Tributary, Upper Swift Creek and Swift Creek gauges are 600±170 (SE), 1065±150 and 1795±270t/year, respectively.
- Subject
- bedload fluxes; bedload ratings; bias correction methods; hydrographs; flow duration curves
- Identifier
- http://hdl.handle.net/1959.13/1334759
- Identifier
- uon:27355
- Identifier
- ISSN:0885-6087
- Language
- eng
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