Statistical modelling and power analysis for detecting trends in total suspended sediment loads


Autoria(s): Wang, You-Gan; Wang, Shen S.J.; Dunlop, Jason
Data(s)

2015

Resumo

The export of sediments from coastal catchments can have detrimental impacts on estuaries and near shore reef ecosystems such as the Great Barrier Reef. Catchment management approaches aimed at reducing sediment loads require monitoring to evaluate their effectiveness in reducing loads over time. However, load estimation is not a trivial task due to the complex behaviour of constituents in natural streams, the variability of water flows and often a limited amount of data. Regression is commonly used for load estimation and provides a fundamental tool for trend estimation by standardising the other time specific covariates such as flow. This study investigates whether load estimates and resultant power to detect trends can be enhanced by (i) modelling the error structure so that temporal correlation can be better quantified, (ii) making use of predictive variables, and (iii) by identifying an efficient and feasible sampling strategy that may be used to reduce sampling error. To achieve this, we propose a new regression model that includes an innovative compounding errors model structure and uses two additional predictive variables (average discounted flow and turbidity). By combining this modelling approach with a new, regularly optimised, sampling strategy, which adds uniformity to the event sampling strategy, the predictive power was increased to 90%. Using the enhanced regression model proposed here, it was possible to detect a trend of 20% over 20 years. This result is in stark contrast to previous conclusions presented in the literature. (C) 2014 Elsevier B.V. All rights reserved.

Identificador

http://eprints.qut.edu.au/90418/

Publicador

Elsevier BV

Relação

DOI:10.1016/j.jhydrol.2014.10.062

Wang, You-Gan, Wang, Shen S.J., & Dunlop, Jason (2015) Statistical modelling and power analysis for detecting trends in total suspended sediment loads. Journal of Hydrology, 520, pp. 439-447.

Direitos

Copyright 2014 Elsevier B.V.

Fonte

Science & Engineering Faculty

Palavras-Chave #Environmental monitoring #Trend detection #Power #Pollutant loads #Suspended sediment #Uncertainty #great-barrier-reef #turbidity measurements #rating curves #river loads #phosphorus #solids #yield
Tipo

Journal Article