Search results for "Urban heat Island"

showing 10 items of 47 documents

Effects of Urbanization on the Temperature Inversion Breakup in a Mountain Valley with Implications for Air Quality

2014

AbstractMany cities located in valleys with limited ventilation experience serious air pollution problems. The ventilation of an urban valley can be limited not only by orographic barriers, but also by urban heat island–induced circulations and/or the capping effect of temperature inversions. Furthermore, land-use/-cover changes caused by urbanization alter the dynamics of temperature inversions and urban heat islands, thereby affecting air quality in an urban valley. By means of idealized numerical simulations, it is shown that in a mountain valley subject to temperature inversions urbanization can have an important influence on air quality through effects on the inversion breakup. Dependi…

Atmospheric Sciencegeographygeography.geographical_feature_categoryUrban climatologyUrbanizationClimatologyEnvironmental scienceInversion (meteorology)Urban heat islandBreakupUrban areaAir quality indexOrographic liftJournal of Applied Meteorology and Climatology
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Optical Remote Sensing in Urban Environments

2016

International audience; Cities today face a variety of issues: attractiveness and economic development, living conditions and urban redevelopment, the quality of life of citizens and the environmental conditions of the urban system as a whole. These challenges reflect the situations in urban territories where the economic development and population growth required for stabilizing the urban system come into conflict with the promotion of esthetic urban improvements appropriate for social cohesion and ensuring the safety of users while guaranteeing a reduction of the environmental impact caused by urban spread [WGI 14, WEB 15, MAC 07, WIL 11]. The process of urbanization, which has significan…

Attractiveness010504 meteorology & atmospheric sciencesOPTICAL REMOTE SENSING0211 other engineering and technologiesUrban regeneration02 engineering and technologyURBANISMECHARACTERISTICS01 natural sciencesREMOTE SENSING[SPI]Engineering Sciences [physics]VHR11. SustainabilityURBAN SYSTEMOPTICAL PROPERTIESMAPPING AND PLANNINGUrban heat islandEnvironmental planning021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensing[PHYS]Physics [physics]ENVIRONMENTBIODIVERSITE15. Life on landURBAN HEAT ISLANDSVariety (cybernetics)Geography13. Climate actionRemote sensing (archaeology)Urban systemVEGETATION
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Surface to boundary layer coupling in the urban area of Lisbon comparing different urban canopy models in WRF

2019

Abstract This work presents a sensitivity study to evaluate different Urban Canopy Models (UCM) existing within the Weather Research and Forecasting Model (WRF) in the urban area of Lisbon, Portugal. Several hind-cast simulations were carried out for a selected period in July 2010, in which synoptic conditions favoured urban heat island formation. We aim to gain knowledge on the feedback of modified urban canopy representation in WRF on local scale meteorology and the boundary-layer dynamics over the urban area, by comparing a single layer urban canopy model (SLUCM) and a more sophisticated multi-layer building effect parametrisation (BEP). We find significant differences in the characteris…

CanopyAtmospheric Sciencegeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesUrban climatologyGeography Planning and Development010501 environmental sciencesEnvironmental Science (miscellaneous)Atmospheric sciencesUrban area01 natural scienceslaw.inventionUrban StudiesBoundary layerlawWeather Research and Forecasting ModelTurbulence kinetic energyRadiosondeEnvironmental scienceUrban heat island0105 earth and related environmental sciencesUrban Climate
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Seminar: “Local Climate Change and Urban Mitigation Techniques to Counterbalance It”, University of Palermo, Italy, March 2017

2017

Climate ChangeUrban Heat IslandMitigation Techniques
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A statistical-dynamical downscaling for the urban heat island and building energy consumption - Analysis of Its uncertainties.

2020

AbstractHigh-resolution maps of the urban heat island (UHI) and building energy consumption are relevant for urban planning in the context of climate change mitigation and adaptation. A statistical–dynamical downscaling for these parameters is proposed in the present study. It combines a statistical local weather type approach with dynamical simulations using the mesoscale atmospheric model Meso-NH coupled to the urban canopy model Town Energy Balance. The downscaling is subject to uncertainties related to the weather type approach (statistical uncertainty) and to the numerical models (dynamical uncertainty). These uncertainties are quantified for two French cities (Toulouse and Dijon) for …

Consumption (economics)Atmospheric Science010504 meteorology & atmospheric sciencesbusiness.industryEnvironmental resource managementBuilding energyContext (language use)010501 environmental sciences01 natural sciences7. Clean energyClimate change mitigation13. Climate actionUrban planning[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/Climatology11. SustainabilityEnvironmental scienceUrban heat islandbusinessAdaptation (computer science)0105 earth and related environmental sciencesDownscaling
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Modeling transpiration and leaf temperature of urban trees – A case study evaluating the microclimate model ENVI-met against measurement data

2018

Abstract Increasing vegetation cover in cities is a key approach to mitigating urban heat excess. However, both the effect of vegetation on microclimate and the plants’ vitality need to be assessed to support and quantify the effects of such strategies. One way to assess the interactions between vegetation and the urban environment is through microclimate models that can simulate the effects of vegetation onto the urban microclimate as well as effects of urban environments onto vegetation. To provide reliable estimates microclimate models need to be parameterized based on empirically obtained data. In this paper we compare modeled transpiration rates and leaf temperatures of a leading micro…

Empirical data010504 meteorology & atmospheric sciencesEcologyFlow (psychology)MicroclimateVegetation010501 environmental sciencesManagement Monitoring Policy and LawAtmospheric sciences01 natural sciencesVegetation coverUrban StudiesPhotosynthetically active radiationEnvironmental scienceUrban heat island0105 earth and related environmental sciencesNature and Landscape ConservationTranspirationLandscape and Urban Planning
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Energy Equalization and the Case of the “nZEB Hotels”

2020

Nowadays, energy equalization is one of the many issues concerning the energy policies on the urban scale and in the perspective of reducing the Urban Heat Island effects (UHI-e). The different economic-financial profiles of the interventions implemented in the buildings having a wide range of climatic locations, typological arrangements, architectural-historical constraints, need to be coordinated within unitary local energy-environmental policies inspired by economic-financial as well as environmental issues. The renovation of existing hotels to achieve a nearly Zero-Energy performance is one of the goals of the 2050 EU’s energy policy. This paper presents the nZEB retrofit case of an exi…

EnergyComputer scienceEqualization (audio)Economic analysisEnvironmental economicsUnitary stateHotelsEnergy policyHotelEffective energyOrder (exchange)nZEBSettore ICAR/22 - EstimoUrban scaleUrban heat islandEnergy (signal processing)
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Role of Green Coverings in Mitigating Heat Island Effects: An Analysis of Physical Models

2012

Worldwide, governments are introducing several rules and standards in the aim of limiting the quantity of primary energy for air conditioning of buildings and supporting the use of renewable source of energy for generating thermal and electric energy to be utilized in buildings such as the European Directive on the Energy Performance of Buildings [1]. Along with these interventions, another important action takes currently place in the building sector, that is the introduction of passive structural components of the envelope, able to reduce the requirements of energy for air conditioning purposes. Among these building components, the so-called green roofs are becoming more and more interest…

EngineeringArchitectural engineeringZero-energy buildingPrimary energybusiness.industryGreen roofEnergy balanceGeneral MedicineCivil engineeringRenewable energyAir conditioningUrban heat islandbusinessRoofApplied Mechanics and Materials
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Building green covering for a sustainable use of energy

2013

Nowadays the growth of the cities increased built and paved areas, energy use and heat generation. The phenomenon of urban warming, called urban heat island, influences negatively outdoor comfort conditions, pollutants concentration, energy demand for air conditioning, as well as increases environmental impact due to the demand of energy generation. A sustainable technology for improving the energy efficiency of buildings is the use of green roofs and walls in order to reduce the energy consumption for conditioning in summer and improve the thermal insulation in winter. The use of green roofs and walls can contribute to mitigate the phenomenon of heat island, the emissions of greenhouse gas…

EngineeringBioengineeringAir-conditioning; Energy savings; Green roofs; Green walls; Urban ecology; Industrial and Manufacturing Engineering; Mechanical Engineering; BioengineeringEnergy savingsair-conditioning energy savings urban ecology green roofs green walls.Industrial and Manufacturing Engineeringlcsh:Agriculturegreen roofsenergy savingSustainable designUrban heat islandlcsh:Agriculture (General)business.industryair-conditioningMechanical EngineeringEnvironmental engineeringlcsh:SThermal comfortEnergy consumptiongreen wallslcsh:S1-972urban ecologyAir conditioningHeat generationSustainabilitybusinessEfficient energy useair-conditioning; energy saving; urban ecology; green roofs; green walls
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Assessing the effectiveness of green roofs in enhancing the energy and indoor comfort resilience of urban buildings to climate change: Methodology pr…

2021

Abstract The effects of climate change on the built environment represents an important research challenge. Today, green roofs (GRs) represent a viable solution for enhancing energy and urban resilience in the face of climate change, as they can have a positive impact on the building's indoor thermal comfort and energy demand, as well as inducing various environmental benefits (easing urban heat island effects, improving the management of runoff water, reducing air pollution, etc.). Thus, it is important to be able to assess their effectiveness, both today and under future climate conditions, in order to evaluate whether they can also provide a valid long-term solution. In this paper, a sim…

Environmental EngineeringSettore ING-IND/11 - Fisica Tecnica Ambientalebusiness.industryGeography Planning and DevelopmentEnvironmental resource managementAir pollutionClimate changeThermal comfortBuilding and Constructionmedicine.disease_causeEffects of global warmingmedicineEnvironmental scienceClimate change adaptation Energy building simulation Energy savings Green roofs Indoor thermal comfort Urban buildings resilienceUrban heat islandbusinessResilience (network)Urban resilienceBuilt environmentCivil and Structural Engineering
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