Javascript must be enabled to continue!
Advancing stream classification and hydrologic modeling of ungaged basins for environmental flow management in coastal southern California
View through CrossRef
Abstract. Environmental streamflow management can improve the ecological health of streams by returning modified flows to more natural conditions. The Ecological Limits of Hydrologic Alteration (ELOHA) framework for developing regional environmental flow criteria has been implemented to reverse hydromodification across the heterogenous region of coastal southern California (So. CA) by focusing on two elements of the flow regime: streamflow permanence and flashiness. Within ELOHA, classification groups streams by hydrologic and geomorphic similarity to stratify flow-ecology relationships. Analogous grouping techniques are used by hydrologic modelers to facilitate streamflow prediction in ungaged basins (PUB) through regionalization. Most watersheds, including those needed for stream classification and environmental flow development, are ungaged. Furthermore, So. CA is a highly heterogeneous region spanning a gradient of urbanization, which presents a challenge for regionalizing ungaged basins. In this study, we develop a novel classification technique for PUB modeling that uses an inductive approach to group regional streams by modeled hydrologic similarity followed by deductively determining class membership with hydrologic model errors and watershed metrics. As a new type of classification, this “Hydrologic Model-based Classification” (HMC) prioritizes modeling accuracy, which in turn provides a means to improve model predictions in ungaged basins, while complementing traditional classifications and improving environmental flow management. HMC is developed by calibrating a regional catalog of process-based rainfall-runoff models, quantifying the hydrologic reciprocity of calibrated parameters that would be unknown in ungaged basins, and grouping sites according to hydrologic and physical similarity. HMC was applied to 25 USGS streamflow gages in the south coast region of California and was compared to other hybrid PUB approaches combining inductive and deductive classification. Using an Average Cluster Error metric, results show HMC provided the most hydrologically similar groups according to calibrated parameter reciprocity. Hydrologic Model-based Classification is relatively complex and time-consuming to implement, but it shows potential for advancing ungaged basin management. This study demonstrates the benefits of thorough stream classification using multiple approaches, and suggests that Hydrologic Model-based Classification has advantages for PUB and building the hydrologic foundation for environmental flow management.
Title: Advancing stream classification and hydrologic modeling of ungaged basins for environmental flow management in coastal southern California
Description:
Abstract.
Environmental streamflow management can improve the ecological health of streams by returning modified flows to more natural conditions.
The Ecological Limits of Hydrologic Alteration (ELOHA) framework for developing regional environmental flow criteria has been implemented to reverse hydromodification across the heterogenous region of coastal southern California (So.
CA) by focusing on two elements of the flow regime: streamflow permanence and flashiness.
Within ELOHA, classification groups streams by hydrologic and geomorphic similarity to stratify flow-ecology relationships.
Analogous grouping techniques are used by hydrologic modelers to facilitate streamflow prediction in ungaged basins (PUB) through regionalization.
Most watersheds, including those needed for stream classification and environmental flow development, are ungaged.
Furthermore, So.
CA is a highly heterogeneous region spanning a gradient of urbanization, which presents a challenge for regionalizing ungaged basins.
In this study, we develop a novel classification technique for PUB modeling that uses an inductive approach to group regional streams by modeled hydrologic similarity followed by deductively determining class membership with hydrologic model errors and watershed metrics.
As a new type of classification, this “Hydrologic Model-based Classification” (HMC) prioritizes modeling accuracy, which in turn provides a means to improve model predictions in ungaged basins, while complementing traditional classifications and improving environmental flow management.
HMC is developed by calibrating a regional catalog of process-based rainfall-runoff models, quantifying the hydrologic reciprocity of calibrated parameters that would be unknown in ungaged basins, and grouping sites according to hydrologic and physical similarity.
HMC was applied to 25 USGS streamflow gages in the south coast region of California and was compared to other hybrid PUB approaches combining inductive and deductive classification.
Using an Average Cluster Error metric, results show HMC provided the most hydrologically similar groups according to calibrated parameter reciprocity.
Hydrologic Model-based Classification is relatively complex and time-consuming to implement, but it shows potential for advancing ungaged basin management.
This study demonstrates the benefits of thorough stream classification using multiple approaches, and suggests that Hydrologic Model-based Classification has advantages for PUB and building the hydrologic foundation for environmental flow management.
Related Results
Constraining simulation uncertainties in a hydrological model of the Congo River Basin including a combined modelling approach for channel-wetland exchanges
Constraining simulation uncertainties in a hydrological model of the Congo River Basin including a combined modelling approach for channel-wetland exchanges
Compared to other large river basins of the world, such as the Amazon, the Congo River Basin appears to be the most ungauged and less studied. This is partly because the basin lack...
Structural Characteristics and Formation Dynamics: A Review of the Main Sedimentary Basins in the Continent of China
Structural Characteristics and Formation Dynamics: A Review of the Main Sedimentary Basins in the Continent of China
Abstract
The formation and evolution of basins in the China continent are closely related to the collages of many blocks and orogenic belts. Based on a large amou...
Multi-order hydrologic position: a high-resolution dataset for the conterminous United States
Multi-order hydrologic position: a high-resolution dataset for the conterminous United States
The location of a point within a stream network can be an important measure in hydrology. Hydrologic position (HP) is defined here by two metrics: lateral position (LP) and distanc...
COASTAL ENGINEERING 2000
COASTAL ENGINEERING 2000
*** Available Only Through ASCE ***
http://ascelibrary.aip.org/browse/asce/vol_title.jsp?scode=C
This Proceedings contains more than 300 papers pre...
Petroleum Systems of the Russian Western Arctic Basins
Petroleum Systems of the Russian Western Arctic Basins
Abstract
The structure of the Arctic Eurasian basins suggests that petroleum systems of Palaeozoic, Mesozoic and Cenozoic age may be present. Palaeozoic petroleum...
Coastal karst springs in the Mediterranean basin : study of the mechanisms of saline pollution at the Almyros spring (Crete), observations and modelling
Coastal karst springs in the Mediterranean basin : study of the mechanisms of saline pollution at the Almyros spring (Crete), observations and modelling
Abstract
Variations in salinity and flow rate in the aerial, naturally salty spring of Almyros of Heraklion on Crete were monitored during two hydrological cycles. W...
Landscape Influences on Stream Habitats and Biological Assemblages
Landscape Influences on Stream Habitats and Biological Assemblages
<em>Abstract.</em>—We reviewed native fish zoogeography in 22 major tributary basins of the Missouri River basin in the Great Plains geomorphic province and used island...
Lahar simulation using Laharz_py program for the Mt. Halla volcano, Jeju, Korea
Lahar simulation using Laharz_py program for the Mt. Halla volcano, Jeju, Korea
This study using Laharz_py program, was performed schematic prediction
on the impact area of lahar hazards at the Mt. Halla volcano, Jeju
island volcanic field, Korea. In order to ...

