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Intended Audience: for civil engineers, landscape architects, stormwater management professionals, and environmental consultants involved in urban infrastructure and green stormwater solutions.
PDH UNITS: 6
Bioretention systems play a crucial role in sustainable stormwater management, reducing runoff, improving water quality, and enhancing urban resilience. This course provides a comprehensive guide to designing, implementing, and maintaining bioretention facilities for long-term performance. Participants will explore design principles, best practices, and innovative techniques to optimize bioretention systems for diverse environmental conditions. Whether you’re an engineer, landscape architect, or stormwater professional, this course equips you with practical knowledge and tools to create efficient and sustainable bioretention solutions.  Course Outline
- Introduction to Bioretention Systems
- Overview of green stormwater infrastructure
- Bioretention benefits and applications
- Bioretention Design Elements
- Soil media composition and infiltration rates
- Vegetation selection and establishment
- System sizing and hydrologic performance
- Holistic Design Principles
- Site-specific considerations and adaptability
- Urban heat mitigation and environmental benefits
- Community engagement and equity in stormwater design
- Runoff Capture and Pretreatment
- Inlet types and drainage considerations
- Sediment and pollutant filtration strategies
- Engineering and Performance Optimization
- Hydrologic modeling and water quality performance
- Designing for longevity and resilience
- Construction and Maintenance Best Practices
- Site preparation and installation guidelines
- Long-term operation and maintenance strategies
- Innovative Approaches and Case Studies
- Emerging trends in bioretention design
- Real-world applications and success stories
Learning Objectives
At the successful conclusion of this course, you’ll be able to identify and discuss:- Understand the fundamentals of bioretention and green stormwater infrastructure.
- Apply best practices in bioretention system design and implementation.
- Select appropriate soil media and vegetation for optimal stormwater treatment.
- Analyze hydrologic performance and infiltration rates.
- Integrate holistic design principles for enhanced system longevity.
- Optimize runoff capture and pretreatment methods.
- Identify strategies for pollutant removal and sediment control.
- Assess site conditions and develop adaptable bioretention plans.
- Explore innovative engineering solutions to enhance performance.
- Implement construction techniques that ensure successful system function.
- Develop effective maintenance plans for long-term resilience.
- Utilize case studies to inform bioretention design strategies.
- Recognize the importance of community engagement in stormwater management.
ACCEPTANCE GUARANTEE
Ncite Engineering Hub engineering courses & live webinars meet NCEES Guidelines for Professional Engineer licenses renewal in all 50 states.
Live Webinars satisfy strict “Live Contact Hour” state mandates.
100% money-back State Board Acceptance Guarantee
Ncite Engineering Hub will refund your payment if the PDH credits you earn are rejected by your state board for any reason.
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E – 1840 Engineering Ethics: The Collapse of the FIU Pedestrian Bridge. Design & Ethical Failuresby Dr. Abolhassan Astaneh-Asl, Professor Emeritus. Ph.D., PE

E – 2090 Ethical Engineering Practices and Case Studies; Modern Ethical Challengesby Steven Vitale. Ph.D., P.E.
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