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September 28, 2025Sustainability1 citationsOpen Access

Continuous Wavelet Analysis of Water Quality Time Series in a Rapidly Urbanizing Mixed-Land-Use Watershed in Ontario, Canada

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SBSukhmani BolaRRRamesh RudraRSRituraj Shukla

Key Points

  • Significant temporal variations in water quality parameters were identified, indicating seasonal influence on water quality dynamics.
  • Statistical analyses revealed high power at a 95% confidence level for parameters like pH and dissolved oxygen during late spring to early fall.
  • Continuous wavelet analysis was employed to detect correlations in real-time water quality data collected since 2010.
  • Findings highlight the need for adaptive watershed management strategies in the context of urbanization and mixed land use.

Abstract

Urbanization and mixed-land-use development significantly impact water quality dynamics in watersheds, necessitating continuous monitoring and advanced analytical techniques for sustainable water management. This study employs continuous wavelet analysis to investigate the temporal variability and correlations of real-time water quality parameters in the Credit River watershed, Ontario, Canada. The Integrated Watershed Monitoring Program (IWMP), initiated by the Credit Valley Conservation (CVC) Authority, has facilitated long-term real-time water quality monitoring since 2010. Fundamental and exploratory statistical analyses were conducted to identify patterns, trends, and anomalies in key water quality parameters, including pH, specific conductivity, turbidity, dissolved oxygen (DO), chloride, water temperature (\ (T^°₇䃒O) \), air temperature (\ (T^°₀₈ₑ) \), streamflow, and water level. Continuous wavelet transform and wavelet coherence techniques revealed significant temporal variations, with “1-day” periodicities for DO, pH, (\ (T^°₇䃒O) \), and (\ (T^°₀₈ₑ) \) showing high power at a 95% confidence level against red noise, particularly from late spring to early fall, rather than throughout the entire year. These findings underscore the seasonal influence on water quality and highlight the need for adaptive watershed management strategies. The study demonstrates the potential of wavelet analysis in detecting temporal patterns and informing decision-making for sustainable water resource management in rapidly urbanizing mixed-land-use watersheds.

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Cite This Study

Bola et al. (2025) studied this question.

synapsesocial.com/papers/68d9051b41e1c178a14f4df1https://doi.org/10.3390/su17198685
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