Literature DB >> 32523421

A flexible modeling framework for hydraulic and water quality performance assessment of stormwater green infrastructure.

Arash Massoudieh1, Mahdi Maghrebi1, Babak Kamrani2, Christopher Nietch3, Michael Tryby3, Sassan Aflaki1, Srinivas Panguluri4.   

Abstract

A flexible framework has been created for modeling multi-dimensional hydrological and water quality processes within stormwater green infrastructure (GI) practices. The framework conceptualizes GI practices using blocks (spatial features) and connectors (interfaces) representing functional components of a GI. The blocks represent spatial features with the ability to store water (e.g., pond, soil, benthic sediments, manhole, or a generic storage zone) and water quality constituents including chemical constituents and particles. The hydraulic module can solve a combination of Richards equation, kinematic/diffusive wave, Darcy, and other user-provided flow models. The particle transport module is based on performing mass-balance on particles in different phases, e.g., mobile and deposited in soil with constitutive theories controlling their transport, settling, deposition, and release. The reactive transport modules allow constituents to be in dissolved, sorbed, bound to particles, and undergo user-defined transformations. Four applications of the modeling framework are presented that demonstrate its flexibility for simulating urban GI performance.

Entities:  

Keywords:  Green infrastructure; Low impact development; Modeling fate and transport; Porous pavement; Rain garden; Stormwater management

Year:  2017        PMID: 32523421      PMCID: PMC7286434     

Source DB:  PubMed          Journal:  Environ Model Softw        ISSN: 1364-8152            Impact factor:   5.288


  1 in total

1.  Modeling and Design Scenario Analysis of Long-Term Monitored Bioretention System for Rainfall-Runoff Reduction to Combined Sewer in Cincinnati, OH.

Authors:  Jamal Alikhani; Christopher Nietch; Scott Jacobs; Bill Shuster; Arash Massoudieh
Journal:  J Sustain Water Built Environ       Date:  2020-05-04
  1 in total

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