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Urban Building Energy Modeling to Support Climate-Sensitive Planning in the Suburban Areas of Santiago de Chile
by
Felmer, Gabriel
, Zhang, Xiaotong
, Yang, Huisi
, Alehasin, Maryam
, Mutani, Guglielmina
in
Air pollution
/ Air quality management
/ building archetypes
/ Buildings
/ Chile
/ Cities
/ Climate models
/ Climatic conditions
/ Context
/ Demand analysis
/ Developing countries
/ Emissions
/ Emissions control
/ Energy conservation
/ Energy consumption
/ Energy demand
/ Energy industry
/ Energy modeling
/ energy performance
/ energy savings
/ Geographic information systems
/ GHG emissions
/ Green technology
/ Greenhouse gases
/ LDCs
/ Natural gas
/ Retrofitting
/ retrofitting interventions
/ Solar energy
/ Space heating
/ Spatial distribution
/ Suburban areas
/ Thermal insulation
/ urban building energy modeling
/ Urban environments
/ Urban planning
2024
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Urban Building Energy Modeling to Support Climate-Sensitive Planning in the Suburban Areas of Santiago de Chile
by
Felmer, Gabriel
, Zhang, Xiaotong
, Yang, Huisi
, Alehasin, Maryam
, Mutani, Guglielmina
in
Air pollution
/ Air quality management
/ building archetypes
/ Buildings
/ Chile
/ Cities
/ Climate models
/ Climatic conditions
/ Context
/ Demand analysis
/ Developing countries
/ Emissions
/ Emissions control
/ Energy conservation
/ Energy consumption
/ Energy demand
/ Energy industry
/ Energy modeling
/ energy performance
/ energy savings
/ Geographic information systems
/ GHG emissions
/ Green technology
/ Greenhouse gases
/ LDCs
/ Natural gas
/ Retrofitting
/ retrofitting interventions
/ Solar energy
/ Space heating
/ Spatial distribution
/ Suburban areas
/ Thermal insulation
/ urban building energy modeling
/ Urban environments
/ Urban planning
2024
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Do you wish to request the book?
Urban Building Energy Modeling to Support Climate-Sensitive Planning in the Suburban Areas of Santiago de Chile
by
Felmer, Gabriel
, Zhang, Xiaotong
, Yang, Huisi
, Alehasin, Maryam
, Mutani, Guglielmina
in
Air pollution
/ Air quality management
/ building archetypes
/ Buildings
/ Chile
/ Cities
/ Climate models
/ Climatic conditions
/ Context
/ Demand analysis
/ Developing countries
/ Emissions
/ Emissions control
/ Energy conservation
/ Energy consumption
/ Energy demand
/ Energy industry
/ Energy modeling
/ energy performance
/ energy savings
/ Geographic information systems
/ GHG emissions
/ Green technology
/ Greenhouse gases
/ LDCs
/ Natural gas
/ Retrofitting
/ retrofitting interventions
/ Solar energy
/ Space heating
/ Spatial distribution
/ Suburban areas
/ Thermal insulation
/ urban building energy modeling
/ Urban environments
/ Urban planning
2024
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Urban Building Energy Modeling to Support Climate-Sensitive Planning in the Suburban Areas of Santiago de Chile
Journal Article
Urban Building Energy Modeling to Support Climate-Sensitive Planning in the Suburban Areas of Santiago de Chile
2024
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Overview
Greenhouse gas emissions depend on natural and anthropic phenomena; however, to reduce emissions, we can only intervene in terms of anthropic causes. Human activity is very different in various countries and cities. This is mainly due to differences in the type of urban environment, climatic conditions, socioeconomic context, government stability, and other aspects. Urban building energy modeling (UBEM), with a GIS-based approach, allows the evaluation of all the specific characteristics of buildings, population, and urban context that can describe energy use and its spatial distribution within a city. In this paper, a UBEM is developed using the characteristics and consumption of eight typical buildings (archetypes) in the climate zone of Santiago de Chile. The archetype-based UBEM is then applied to the commune of Renca, a critical suburb of Santiago, with the use of QGIS to analyze the energy demand for space heating and the potential for energy saving after four retrofitting interventions. Knowing the costs of the retrofitting interventions and the energy price, the simple payback time was evaluated with the reduction in GHG emissions. Starting from the actual building stock, the results show that the most effective retrofitting intervention for the commune of Renca is the thermal insulation of walls and roofs; due to the type of dwellings, this particular intervention could be more convenient if associated with the installation of solar technologies. This methodology can be replicated with the data used by urban planners and public administrations available for many Chilean cities and in other countries.
Publisher
MDPI AG
Subject
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