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<h5>UNDERGROUND INFILTRATION SYSTEMS</h5> | <h5>[[Infiltration galleries|UNDERGROUND INFILTRATION SYSTEMS]]</h5> | ||
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<h5>ENHANCED GRASS SWALES</h5> | <h5>[[Swales|ENHANCED GRASS SWALES]]</h5> | ||
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Revision as of 21:56, 11 July 2017
<textdanger>THIS WEBSITE IS UNDER CONSTRUCTION. DO NOT REFERENCE CONTENT PRESENTED ON THIS WEBSITE UNTIL THIS MESSAGE HAS BEEN REMOVED.</textdanger> |
Welcome to the Low Impact Development Stormwater Management Practice Planning and Design Guide
The Low Impact Development Stormwater Management Planning and Design Guide (LID SWM Guide) has been developed by Credit Valley Conservation (CVC) and Toronto and Region Conservation Authority (TRCA) as a tool to help developers, consultants, municipalities and landowners understand and implement more sustainable stormwater management planning and design practices in their watersheds. Many jurisdictions have defined the term low impact development. For this document, the following definition, adapted from the United States Environmental Protection Agency (U.S. EPA, 2007) will be used:
Low impact development (LID) is a stormwater management strategy that seeks to mitigate the impacts of increased runoff and stormwater pollution by managing runoff as close to its source as possible. LID comprises a set of site design strategies that minimize runoff and distributed, small scale structural practices that mimic natural or predevelopment hydrology through the processes of infiltration, evapotranspiration, harvesting, filtration and detention of stormwater. These practices can effectively remove nutrients, pathogens and metals from runoff, and they reduce the volume and intensity of stormwater flows.
CONTENTS
INTRODUCTION TO THE LOW IMPACT DEVELOPMENT PLANNING AND DESIGN GUIDE
INTEGRATING STORMWATER MANAGEMENT INTO THE PLANNING PROCESS
Overview of Integrating Stormwater Management Into the Planning Process
Landscape-based Stormwater Management Planning Process and Team
Environmental, Land Use and Stormwater Management Planning
Integrating Stormwater Infrastructure Into the Urban Fabric and the Landscape
Landscape-based SWM Planning and Design Principles
Landscape-based stromwater planning in accord with site geologic context
Landscape-based Stormwater Management Planning at Different Scales
Stormwater Management Opportunities at the Community Scale
Stormwater Management Opportunities at the Neighbourhood Scale
Stormwater Management Opportunities at the Site Scale
Stormwater Management Opportunities for Infill and Redevelopment Sites
Treatment Train Approach to Stormwater Management System Design
URBANIZATION, CLIMATE CHANGE AND THE LOW IMPACT DEVELOPMENT APPROACH
Principles of Low Impact Development
Flooding and Stream Flows
Environmental Flows
Erosion and Sedimentation (Geomorphology)
Surface and Groundwater Water Quality
Aquatic Habitats (incl. thermal impacts)
Terrestrial
Hydrodeology
Climate Change
Landscape and Recreation
Climate Change Resiliency through Stormwater Management
Climate Change in Ontario
Anticipated Impacts of Climate Change in Ontario
Enhancing Climate Change Resiliency With LID
Examples of LID Strategies to Enhance Climate Change Resiliency
Factoring Predicted Climate Change into Stormwater Infrastructure Design
DESIGN OF STRUCTURAL LOW IMPACT DEVELOPMENT PRACTICES FOR STORMWATER MANAGEMENT
Overview
Design Guidance
BMP Sizing
Design Specifications
Construction Considerations
Inspection and Maintenance Needs
Life Cycle Costs
Case Studies
Typical Design Drawings
Supporting Material and External Resources
Overview
Design Guidance
BMP Sizing
Design Specifications
Construction Considerations
Inspection and Maintenance Needs
Life Cycle Costs
Case Studies
Typical Design Drawings
Supporting Material and External Resources
Underground Infiltration Systems
Overview
Design Guidance
BMP Sizing
Design Specifications
Construction Considerations
Inspection and Maintenance Needs
Life Cycle Costs
Case Studies
Typical Design Drawings
Supporting Material and External Resources
Overview
Design Guidance
BMP Sizing
Design Specifications
Construction Considerations
Inspection and Maintenance Needs
Life Cycle Costs
Case Studies
Typical Design Drawings
Supporting Material and External Resources
Overview
Design Guidance
BMP Sizing
Design Specifications
Construction Considerations
Inspection and Maintenance Needs
Life Cycle Costs
Case Studies
Typical Design Drawings
Supporting Material and External Resources
Overview
Design Guidance
BMP Sizing
Design Specifications
Construction Considerations
Inspection and Maintenance Needs
Life Cycle Costs
Case Studies
Typical Design Drawings
Supporting Material and External Resources
MONITORING OF STORMWATER MANAGEMENT PRACTICES
HOT TOPICS
<h4Blue>Common concerns about groundwater interaction</h4Blue>
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<h4Blue>Infiltration on tight soils: it's possible!</h4Blue>
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<h4Blue>Water-loving perennials</h4Blue>
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<h4Blue>Budgeting for a BMP's life cycle</h4Blue>
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<h4Blue>Tendering for LIDs</h4Blue>
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<h4Blue>Maintaining BMPs</h4Blue>
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BEST MANAGEMENT PRACTICES
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