Javascript must be enabled to continue!
Multiscale Analysis of Runoff Complexity in the Yanhe Watershed
View through CrossRef
Runoff complexity is an important indicator reflecting the sustainability of a watershed ecosystem. In order to explore the multiscale characteristics of runoff complexity and analyze its variation and influencing factors in the Yanhe watershed in China during the period 1991–2020, we established a new analysis method for watershed runoff complexity based on the complete ensemble empirical mode decomposition with adaptive noise (CEEMDAN) method for the decomposition of multiscale characteristics and the refined composite multiscale entropy (RCMSE) method for the quantification of the system complexity. The results show that runoff and its components all present multiscale complexity characteristics that are different from random signals, and the intermediate frequency modes contribute the most to runoff complexity. The runoff complexity of the Yanhe watershed has decreased gradually since 1991, and 2010 was a turning point of runoff complexity, when it changed from a decline to an increase, indicating that the ecological sustainability of this basin has improved since 2010, which was mainly related to the ecological restoration measures of the Grain for Green Project. This study expands the research perspective for analyzing the variation characteristics of runoff at the multiscale, and provides a reference for the study of watershed ecological sustainability and ecological management.
Title: Multiscale Analysis of Runoff Complexity in the Yanhe Watershed
Description:
Runoff complexity is an important indicator reflecting the sustainability of a watershed ecosystem.
In order to explore the multiscale characteristics of runoff complexity and analyze its variation and influencing factors in the Yanhe watershed in China during the period 1991–2020, we established a new analysis method for watershed runoff complexity based on the complete ensemble empirical mode decomposition with adaptive noise (CEEMDAN) method for the decomposition of multiscale characteristics and the refined composite multiscale entropy (RCMSE) method for the quantification of the system complexity.
The results show that runoff and its components all present multiscale complexity characteristics that are different from random signals, and the intermediate frequency modes contribute the most to runoff complexity.
The runoff complexity of the Yanhe watershed has decreased gradually since 1991, and 2010 was a turning point of runoff complexity, when it changed from a decline to an increase, indicating that the ecological sustainability of this basin has improved since 2010, which was mainly related to the ecological restoration measures of the Grain for Green Project.
This study expands the research perspective for analyzing the variation characteristics of runoff at the multiscale, and provides a reference for the study of watershed ecological sustainability and ecological management.
Related Results
Evaluation of Environmental Efficiency of Runoff Responsibility Distribution from the Perspective of Equity and Efficiency
Evaluation of Environmental Efficiency of Runoff Responsibility Distribution from the Perspective of Equity and Efficiency
<p>In recent years, the risk of flooding disasters caused by climate change has increased, and a new concept of runoff sharing has been proposed in China. It is an op...
Rainfall-runoff estimation of Bojiang lake watershed using SCS-CN model coupled with GIS for watershed management
Rainfall-runoff estimation of Bojiang lake watershed using SCS-CN model coupled with GIS for watershed management
A proper understanding of watershed spatio-temporal hydrological characteristics is critical to the management of a watershed and its natural resources such as water and vegetation...
Quantifying sediment complexity and its implications in the Yanhe watershed using refined composite multiscale fuzzy entropy
Quantifying sediment complexity and its implications in the Yanhe watershed using refined composite multiscale fuzzy entropy
Abstract
The Yanhe watershed, located in the Loess Plateau of China, is a representative loess hilly-gully and ecologically fragile region, posing a critical challenge for ...
Potential Changes in Runoff of California’s Major Water Supply Watersheds in the 21st Century
Potential Changes in Runoff of California’s Major Water Supply Watersheds in the 21st Century
This study assesses potential changes in runoff of California’s eight major Central Valley water supply watersheds in the 21st century. The study employs the latest operative clima...
Exploring the Dominant Runoff Processes in Two Typical Basins of the Yellow River, China
Exploring the Dominant Runoff Processes in Two Typical Basins of the Yellow River, China
Storm runoff in basins is comprised of various runoff processes with widely disparate infiltration and storage capacities, such as Hortonian overland flow (HOF), saturated overland...
Comparisons of Retention and Lag Characteristics of Rainfall–Runoff under Different Rainfall Scenarios in Low-Impact Development Combination: A Case Study in Lingang New City, Shanghai
Comparisons of Retention and Lag Characteristics of Rainfall–Runoff under Different Rainfall Scenarios in Low-Impact Development Combination: A Case Study in Lingang New City, Shanghai
An increasing focus has been given to stormwater management using low-impact development (LID), which is regarded as a “near-nature” concept and is utilized to manage and reduce su...
Estimation of Runoff, Baseflow and ground water status in Parasai-Sindh watershed of SAT region, India
Estimation of Runoff, Baseflow and ground water status in Parasai-Sindh watershed of SAT region, India
Abstract
A study of runoff and baseflow estimation and its impact ground water status are typically limited in semi-arid region of India. We are focused on runoff and basef...
The Role of Climate Change and Human Factors in Affecting Runoff and Hydrological Drought Characteristics of a Watershed
The Role of Climate Change and Human Factors in Affecting Runoff and Hydrological Drought Characteristics of a Watershed
The main objective of the study is to evaluate the roles of climate
change and human factors on runoff, baseflow, and hydrological drought
characteristics at a watershed scale. The...

