Weekly samples from surface waters, springs, soil water and rainfall were collected in a 76.9 km2 mountain rain forest catchment and its tributaries in southern Ecuador. Time series of the stable water isotopes d18O and d2H were used to calculate mean transit times (MTTs) and the transit time distribution functions (TTDs) solving the convolution method for seven lumped-parameter models. For each model setup, the generalized likelihood uncertainty estimation (GLUE) methodology was applied to find the best predictions, behavioral solutions and parameter identifiability. For the study basin, TTDs based on model types such as the linearpiston flow for soil waters and the exponentialpiston flow for surface waters and springs performed better t...
The relative importance of catchment's water provenance and flow paths varies in space and time, com...
Graduation date: 2016Access restricted to the OSU Community, at author's request, from August 25, 20...
In this study, the Mean Transit Time and Mixing Model Analysis methods are combined to unravel the r...
Weekly samples from surface waters, springs, soil water and rainfall were collected in a 76.9 km2 mo...
Precipitation event samples and weekly based water samples from streams and soils were collected in ...
This study focuses on the investigation of the mean transit time (MTT) of water and its spatial vari...
This study focuses on the investigation of the mean transit time (MTT) of water and its spatial vari...
Precipitation water traveling through a catchment takes faster and slower flow paths to reach the ou...
In this study, the Mean Transit Time and Mixing Model Analysis methods are combined to unravel the r...
Residence and travel times of water in headwater catchments, or their smaller spatial units, such as...
Time variant catchment transit time distributions are fundamental descriptors of catchment function ...
Transit time distributions (TTDs) of streamflow are useful descriptors for understanding flow and so...
Stream water mean transit time (MTT) is a fundamental hydrologic parameter that integrates the distr...
The estimation of water and solute transit times in catchments is crucial for predicting the respons...
Many details about the flow of water in soils in a hillslope are unknowable given current technologi...
The relative importance of catchment's water provenance and flow paths varies in space and time, com...
Graduation date: 2016Access restricted to the OSU Community, at author's request, from August 25, 20...
In this study, the Mean Transit Time and Mixing Model Analysis methods are combined to unravel the r...
Weekly samples from surface waters, springs, soil water and rainfall were collected in a 76.9 km2 mo...
Precipitation event samples and weekly based water samples from streams and soils were collected in ...
This study focuses on the investigation of the mean transit time (MTT) of water and its spatial vari...
This study focuses on the investigation of the mean transit time (MTT) of water and its spatial vari...
Precipitation water traveling through a catchment takes faster and slower flow paths to reach the ou...
In this study, the Mean Transit Time and Mixing Model Analysis methods are combined to unravel the r...
Residence and travel times of water in headwater catchments, or their smaller spatial units, such as...
Time variant catchment transit time distributions are fundamental descriptors of catchment function ...
Transit time distributions (TTDs) of streamflow are useful descriptors for understanding flow and so...
Stream water mean transit time (MTT) is a fundamental hydrologic parameter that integrates the distr...
The estimation of water and solute transit times in catchments is crucial for predicting the respons...
Many details about the flow of water in soils in a hillslope are unknowable given current technologi...
The relative importance of catchment's water provenance and flow paths varies in space and time, com...
Graduation date: 2016Access restricted to the OSU Community, at author's request, from August 25, 20...
In this study, the Mean Transit Time and Mixing Model Analysis methods are combined to unravel the r...