Contaminant Fate and Transport Modeling in Distribution Systems: EPANET-C

被引:6
|
作者
Abhijith, Gopinathan R. [1 ]
Ostfeld, Avi [1 ]
机构
[1] Technion Israel Inst Technol, Civil & Environm Engn, IL-32000 Haifa, Israel
关键词
EPANET; EPANET-MSX; water distribution; water quality; PFASs; chlorine; WATER DISTRIBUTION-SYSTEMS; DISINFECTION BY-PRODUCTS; MICROBIAL O-METHYLATION; DRINKING-WATER; POLYFLUOROALKYL SUBSTANCES; CHLORINE RESIDUALS; BACTERIAL-GROWTH; QUALITY; BIOFILMS; BIOMASS;
D O I
10.3390/w14101665
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Typically, computer-based tools built on mathematical models define the time-series behavior of contaminants, in dissolved or colloidal form, within the spatial boundaries of water distribution systems (WDS). EPANET-MSX has become a standard tool for WDS quality modeling due to its collaboration with EPANET. The critical challenges in applying EPANET-MSX include conceptualizing the exchanges among multiple reacting constituents within the WDS domain and developing the scientific descriptions of these exchanges. Moreover, due to its complicated user interface, the EPANET-MSX application demands programming skills from a software engineering viewpoint. The present study aims to overcome these challenges by developing a novel computer-based tool, EPANET-C. Via built-in and customizable conceptual and mathematical models' directories, EPANET-C simplifies WDS water quality modeling for users, even those lacking programming expertise. Due to its flexibility, EPANET-C can become a de facto standard tool in WDS quality modeling study both for the industry and the academia.
引用
收藏
页数:22
相关论文
共 50 条
  • [31] Special Issue on Contaminant Mixtures: Fate, Transport, and Remediation
    Reddy, Krishna R.
    JOURNAL OF HAZARDOUS TOXIC AND RADIOACTIVE WASTE, 2011, 15 (03) : 128 - 129
  • [32] Fate and transport in environmental systems: Integrating experiments, theory and reactive transport modeling
    Van Cappellen, P.
    GEOCHIMICA ET COSMOCHIMICA ACTA, 2008, 72 (12) : A972 - A972
  • [33] MODELING CONTAMINANT PROPAGATION IN DRINKING-WATER DISTRIBUTION-SYSTEMS
    CLARK, RM
    GRAYMAN, WM
    MALES, RM
    HESS, AF
    JOURNAL OF ENVIRONMENTAL ENGINEERING-ASCE, 1993, 119 (02): : 349 - 364
  • [34] Backward Probabilistic Modeling to Identify Contaminant Sources in Water Distribution Systems
    Neupauer, Roseanna M.
    Records, Michael K.
    Ashwood, Wesley H.
    JOURNAL OF WATER RESOURCES PLANNING AND MANAGEMENT-ASCE, 2010, 136 (05): : 587 - 591
  • [35] Prediction of contaminant fate and transport in potable water systems using H2OFate
    Devarakonda, Venkat
    Manickavasagam, Sivakumar
    VanBlaricum, Vicki
    Ginsberg, Mark
    OPTICS AND PHOTONICS IN GLOBAL HOMELAND SECURITY V AND BIOMETRIC TECHNOLOGY FOR HUMAN IDENTIFICATION VI, 2009, 7306
  • [36] A tool for modeling airflow & contaminant transport
    Dols, WS
    ASHRAE JOURNAL, 2001, 43 (03) : 35 - +
  • [37] Contaminant transport modeling in marine clays
    Rajasekaran, G
    Murali, K
    Nagan, S
    Amoudhavally, V
    Santhaswaruban, V
    OCEAN ENGINEERING, 2005, 32 (02) : 175 - 194
  • [38] Centrifuge Modeling of Contaminant Transport in Geomaterials
    Singh, D. N.
    Arnepalli, D. N.
    PROCEEDINGS OF THE 8TH INTERNATIONAL CONGRESS ON ENVIRONMENTAL GEOTECHNICS, VOL 1: TOWARDS A SUSTAINABLE GEOENVIRONMENT, 2019, : 164 - 171
  • [39] Stochastic modeling of transient contaminant transport
    Aguirre, CG
    Haghighi, K
    JOURNAL OF HYDROLOGY, 2003, 276 (1-4) : 224 - 239
  • [40] Gaussian plume modeling of contaminant transport
    Chris Kennedy
    Hans Ericsson
    P. L. R. Wong
    Stochastic Environmental Research and Risk Assessment, 2006, 20 : 119 - 125