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Støjmapping×Luftspredningsmodellering×Miljøkonsekvensvurdering×Grønt infrastrukturs design×
FagområdeMiljøteknikMiljøteknikMiljøteknikMiljøteknik
FamilieProcess / pipelineProcess / pipelineProcess / pipelineProcess / pipeline
Oprindelsesår1999196119702000
OphavspersonWorld Health Organization and ISOPasquill and GiffordU.S. National Environmental Policy Act (NEPA)Urban planners and landscape architects
Typespatial assessment and modeling pipelinemathematical simulation pipelinesystematic assessment and decision-support pipelineintegrated design and planning pipeline
Oprindelig kildeInternational Organization for Standardization. (2008). ISO 13442:2008 Acoustics - Description, Measurement and Assessment of Environmental Noise in Relation to Human Exposure and Health. link ↗Pasquill, F. (1974). Atmospheric Diffusion: The Dispersion of Windborne Material from Industrial and Other Sources (2nd ed.). Ellis Horwood Limited. ISBN: 978-0470657034Glasson, J., Therivel, R., & Chadwick, A. (2005). Introduction to Environmental Impact Assessment (3rd ed.). Routledge. ISBN: 978-0415303910Freeman, R. C. (2005). Green Infrastructure: Intelligent Landscapes for the Twenty-First Century. Routledge. ISBN: 978-0415772662
Aliassernoise assessment, acoustic mapping, sound level modeling, environmental noiseair quality modeling, plume modeling, atmospheric transport, emission dispersionEIA, impact assessment, environmental screening, cumulative effects assessmentGI design, natural infrastructure, nature-based solutions, ecosystem-based adaptation
Relaterede3443
ResuméNoise mapping is an environmental assessment methodology that quantifies and visualizes sound levels spatially across a study area, enabling identification of noise-exposed populations, compliance with regulatory standards, and design of mitigation measures. Standardized by the European Directive 2002/49/EC and ISO 13442, noise mapping combines acoustic measurements, traffic/industrial source modeling, and geographic information systems (GIS) to create contour maps of sound exposure and associated health impacts.Air dispersion modeling is a quantitative method to predict the concentration and deposition of air pollutants (dust, gases, particulates) released from industrial sources, traffic, or combustion. Developed empirically by Pasquill and Gifford in the 1960s and formalized into the Gaussian plume model, these methods predict ground-level concentration downwind of a source using wind speed, stability class, source height, and meteorological data. Air dispersion models are essential tools for regulatory compliance, emission permitting, and exposure assessment.Environmental Impact Assessment (EIA) is a systematic, structured process to identify, predict, and evaluate the environmental and social consequences of proposed development projects (infrastructure, extraction, manufacturing) before implementation. Mandated by law in most jurisdictions since the 1970s (NEPA in USA, EU Directive 2011/92/EU), EIA integrates scientific analysis of air quality, water resources, biodiversity, noise, and socioeconomic effects with stakeholder consultation and decision-making frameworks to inform project approval, design modification, or rejection.Green infrastructure (GI) design is the planning and implementation of natural or nature-based systems (vegetation, soils, water bodies) integrated into urban environments to provide multiple ecosystem services: stormwater management, air quality improvement, heat island mitigation, biodiversity habitat, recreation, and social well-being. Emerged in the 2000s as a sustainability paradigm, green infrastructure combines landscape design, hydrology, ecology, and urban planning to create multifunctional spaces that serve practical and aesthetic goals.
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ScholarGateSammenlign metoder: Noise Mapping · Air Dispersion Modeling · Environmental Impact Assessment · Green Infrastructure Design. Hentet 2026-06-20 fra https://scholargate.app/da/compare