In-process measurement of urban energy-oxygen-pollution for the main residential building areas in Timisoara

The development of cities is below the target in reducing pollution and high population density. The environmental agency formulated the rules for the construction of spatial area-based balances of energy use-oxygen production-pollution for the new Building Code of Timisoara. Studies for households...

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Main Author: Dogaru Vasile
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/37/e3sconf_clima2019_06078.pdf
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spelling doaj-00f653356b214aa2ae60722f6a698c0e2021-02-02T08:35:40ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011110607810.1051/e3sconf/201911106078e3sconf_clima2019_06078In-process measurement of urban energy-oxygen-pollution for the main residential building areas in TimisoaraDogaru Vasile0West University of Timisoara, Nicholas Georgescu-Roegen Interdisciplinary PlatformThe development of cities is below the target in reducing pollution and high population density. The environmental agency formulated the rules for the construction of spatial area-based balances of energy use-oxygen production-pollution for the new Building Code of Timisoara. Studies for households or traffic typically evaluate separately energy, oxygen production or pollution. In this research, we have developed a flow-funds model for conterminous residential building processes with spatial-temporal borders. We are modeling the integrated processes for energy-oxygen-pollution in 14 urban zones for households-buildings with segmentation of partial processes for energy-pollution and separately for oxygen flows. The segmentation is based on modeling of 338 streets at nano-levels as street segments. We have found a new solution for the boundaries in place of the 73 Territorial References Units in the in force Building Code. We made the distinction between area-point and in-process measurement. The modeling revealed that national energy-pollution balances did not integrate oxygen urban production which overestimates the CO2 reported figures. The daily intensity of carbon sequestration in the warm season for 14 zones in Timisoara varies between 0.21-0.70 grams per meter squared for residential areas. The different carbon sequestration intensity justifies differentiated measures to reduce the pollution in residential areas.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/37/e3sconf_clima2019_06078.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Dogaru Vasile
spellingShingle Dogaru Vasile
In-process measurement of urban energy-oxygen-pollution for the main residential building areas in Timisoara
E3S Web of Conferences
author_facet Dogaru Vasile
author_sort Dogaru Vasile
title In-process measurement of urban energy-oxygen-pollution for the main residential building areas in Timisoara
title_short In-process measurement of urban energy-oxygen-pollution for the main residential building areas in Timisoara
title_full In-process measurement of urban energy-oxygen-pollution for the main residential building areas in Timisoara
title_fullStr In-process measurement of urban energy-oxygen-pollution for the main residential building areas in Timisoara
title_full_unstemmed In-process measurement of urban energy-oxygen-pollution for the main residential building areas in Timisoara
title_sort in-process measurement of urban energy-oxygen-pollution for the main residential building areas in timisoara
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description The development of cities is below the target in reducing pollution and high population density. The environmental agency formulated the rules for the construction of spatial area-based balances of energy use-oxygen production-pollution for the new Building Code of Timisoara. Studies for households or traffic typically evaluate separately energy, oxygen production or pollution. In this research, we have developed a flow-funds model for conterminous residential building processes with spatial-temporal borders. We are modeling the integrated processes for energy-oxygen-pollution in 14 urban zones for households-buildings with segmentation of partial processes for energy-pollution and separately for oxygen flows. The segmentation is based on modeling of 338 streets at nano-levels as street segments. We have found a new solution for the boundaries in place of the 73 Territorial References Units in the in force Building Code. We made the distinction between area-point and in-process measurement. The modeling revealed that national energy-pollution balances did not integrate oxygen urban production which overestimates the CO2 reported figures. The daily intensity of carbon sequestration in the warm season for 14 zones in Timisoara varies between 0.21-0.70 grams per meter squared for residential areas. The different carbon sequestration intensity justifies differentiated measures to reduce the pollution in residential areas.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/37/e3sconf_clima2019_06078.pdf
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