The Use of Envi-Met for the Assessment of Nature-Based Solutions’ Potential Benefits in Industrial Parks—A Case Study of Argales Industrial Park (Valladolid, Spain)

Urbanization causes major changes in environmental systems, including those related with radiation balances and other meteorological conditions because of changes in surfaces and the physical environment. In addition, cities generate specific microclimates as a consequence of the diverse conditions...

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Main Authors: Felipe Macedo Alves, Artur Gonçalves, M. Rosario del Caz-Enjuto
Format: Article
Language:English
Published: MDPI AG 2022-06-01
Series:Infrastructures
Subjects:
Online Access:https://www.mdpi.com/2412-3811/7/6/85
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author Felipe Macedo Alves
Artur Gonçalves
M. Rosario del Caz-Enjuto
author_facet Felipe Macedo Alves
Artur Gonçalves
M. Rosario del Caz-Enjuto
author_sort Felipe Macedo Alves
collection DOAJ
description Urbanization causes major changes in environmental systems, including those related with radiation balances and other meteorological conditions because of changes in surfaces and the physical environment. In addition, cities generate specific microclimates as a consequence of the diverse conditions within the urban fabric. Industrial parks represent vast urban areas, often neglected, contributing to the degradation of the urban environment, including poor thermal comfort as a result of soil sealing and low albedo surfaces. Nature-Based Solutions (NBS) can promote the mitigation of the anthropic effects of urbanization using nature as an inspiration. The present study, aimed at estimating the microclimate conditions in a fraction of the Argales industrial park in the city of Valladolid (Spain), with the use of the ENVI-Met software, assesses the current situation and a planned NBS scenario. Base scenario simulation results demonstrate different conditions across the simulations, with higher temperatures on sun-exposed surfaces with low albedo, and lower temperature spots, mostly associated with shadowed areas near existent buildings. After the simulation of the NBS scenario, the results show that, when compared with the base scenario, the projected air temperature changes reach reductions of up to 4.30 °C for the locations where changes are projected from impervious low albedo surfaces to shaded areas in the vicinity of trees and a water body.
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spelling doaj.art-3a9d55b11dd54fbabb99c7823e5abee92023-11-23T17:10:20ZengMDPI AGInfrastructures2412-38112022-06-01768510.3390/infrastructures7060085The Use of Envi-Met for the Assessment of Nature-Based Solutions’ Potential Benefits in Industrial Parks—A Case Study of Argales Industrial Park (Valladolid, Spain)Felipe Macedo Alves0Artur Gonçalves1M. Rosario del Caz-Enjuto2Centro de Investigação de Montanha, Instituto Politécnico de Bragança, 5300-253 Bragança, PortugalCentro de Investigação de Montanha, Instituto Politécnico de Bragança, 5300-253 Bragança, PortugalDepartamento de Urbanismo y Representación de la Arquitectura, University of Valladolid, 47002 Valladolid, SpainUrbanization causes major changes in environmental systems, including those related with radiation balances and other meteorological conditions because of changes in surfaces and the physical environment. In addition, cities generate specific microclimates as a consequence of the diverse conditions within the urban fabric. Industrial parks represent vast urban areas, often neglected, contributing to the degradation of the urban environment, including poor thermal comfort as a result of soil sealing and low albedo surfaces. Nature-Based Solutions (NBS) can promote the mitigation of the anthropic effects of urbanization using nature as an inspiration. The present study, aimed at estimating the microclimate conditions in a fraction of the Argales industrial park in the city of Valladolid (Spain), with the use of the ENVI-Met software, assesses the current situation and a planned NBS scenario. Base scenario simulation results demonstrate different conditions across the simulations, with higher temperatures on sun-exposed surfaces with low albedo, and lower temperature spots, mostly associated with shadowed areas near existent buildings. After the simulation of the NBS scenario, the results show that, when compared with the base scenario, the projected air temperature changes reach reductions of up to 4.30 °C for the locations where changes are projected from impervious low albedo surfaces to shaded areas in the vicinity of trees and a water body.https://www.mdpi.com/2412-3811/7/6/85modelingENVI-Metair temperaturenature-based solutions
spellingShingle Felipe Macedo Alves
Artur Gonçalves
M. Rosario del Caz-Enjuto
The Use of Envi-Met for the Assessment of Nature-Based Solutions’ Potential Benefits in Industrial Parks—A Case Study of Argales Industrial Park (Valladolid, Spain)
Infrastructures
modeling
ENVI-Met
air temperature
nature-based solutions
title The Use of Envi-Met for the Assessment of Nature-Based Solutions’ Potential Benefits in Industrial Parks—A Case Study of Argales Industrial Park (Valladolid, Spain)
title_full The Use of Envi-Met for the Assessment of Nature-Based Solutions’ Potential Benefits in Industrial Parks—A Case Study of Argales Industrial Park (Valladolid, Spain)
title_fullStr The Use of Envi-Met for the Assessment of Nature-Based Solutions’ Potential Benefits in Industrial Parks—A Case Study of Argales Industrial Park (Valladolid, Spain)
title_full_unstemmed The Use of Envi-Met for the Assessment of Nature-Based Solutions’ Potential Benefits in Industrial Parks—A Case Study of Argales Industrial Park (Valladolid, Spain)
title_short The Use of Envi-Met for the Assessment of Nature-Based Solutions’ Potential Benefits in Industrial Parks—A Case Study of Argales Industrial Park (Valladolid, Spain)
title_sort use of envi met for the assessment of nature based solutions potential benefits in industrial parks a case study of argales industrial park valladolid spain
topic modeling
ENVI-Met
air temperature
nature-based solutions
url https://www.mdpi.com/2412-3811/7/6/85
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