Search results for "Green Roof"

showing 10 items of 55 documents

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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The cost of green roofs disposal in a life cycle perspective: covering the gap.

2012

Abstract This study is aimed at providing a contribution in overcoming the current gap, especially in Life Cycle Costing (LCC) and Benefit – Cost (BCA) analyses, due to the lack concerning the green roof disposal costs. Therefore, we have applied to an actual extensive green roof the LCC methodology suggested by D. G. Woodward (that appears like one of the most formalized and generalizable), but we have extended the analysis to the disposal phase. This will allow a complete and proper application of the LCC methodology in order of achieving an economic accounting of this component through its life cycle. In this way, it is possible to achieve the complete evaluation of the “green roof” perf…

EngineeringOperations researchGreen roofLife cycle perspectiveIndustrial and Manufacturing EngineeringPerspective (geometry)Order (exchange)Component (UML)Production (economics)Life cycle costingElectrical and Electronic EngineeringLife-cycle assessmentCivil and Structural EngineeringSettore ING-IND/11 - Fisica Tecnica Ambientalebusiness.industryMechanical EngineeringDisposal phaseBuilding and ConstructionPollutionGeneral EnergyRisk analysis (engineering)Cost analysisLandfillbusinessSubstrateGreen roof Life cycle costing (LCC)
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Embedding “substrate” in environmental assessment of green roofs life cycle: evidences from an application to the whole chain in a Mediterranean site

2012

Abstract A classical LCA methodology is here applied to green roofs including in this analysis also the whole life cycle of the substrate, that represented a lack of previous LCA studies on green roofs. This inclusion will allow a complete and proper application of the LCA methodology to achieve an environmental accounting of the “green roof” performance. We have here chosen to approach the problem by analysing a specific substrate, that is used within an actual extensive green roof. Afterwards, we have applied the LCA methodology to the whole actual extensive green roof whose substrate under analysis is part of. In this manner, we achieved an environmental accounting of the “green roof” pe…

EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleRenewable Energy Sustainability and the Environmentbusiness.industryStrategy and ManagementGreen roofEnvironmental engineeringCivil engineeringIndustrial and Manufacturing EngineeringEnvironmental accountingSubstrate (building)Work (electrical)Substrate specificityEnvironmental impact assessmentgreen roofs substrate extensive green roof life cycle assessment (LCA) life cycle approach end of life phase fertilizers MediterraneanbusinessGeneral Environmental ScienceJournal of Cleaner Production
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Design, Building up and First Results of Three Monitored Green Coverings Over a University Department Building

2015

Abstract A viable solution to reducing the buildings’ energy demand is the implementation of green coverings that have been demonstrated to improve the envelope performance, especially in summer season. Anyway, to apply computer models analyzing the energy performance of buildings equipped with such components, the knowledge of specific parameters is needed. Among these, the fractional vegetation coverage and leaf area index are of great importance. By means of an experimental facility, first results of the evaluation of these foliage-related parameters for five types of vegetation are presented.

Engineeringgreen roofSettore ING-IND/11 - Fisica Tecnica AmbientaleEnergy demandleaf area indexbusiness.industryEnergy performanceGreen roofdesignVegetationsensorsCivil engineeringSummer seasonfractional vegetation coverageEnergy(all)Leaf area indexbusinessEnvelope (motion)Energy Procedia
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On the hygrothermal behavior of coconuts fiber insulators on green roofs.

2020

Coconut fibre insulators, represent an insulating material considered as “exotic”, which clashes with the doubts of his thermo-hygrometric behavior, in particular, in the case of covering technology such as green roofs, a technological solution adopted in the case of sustainable buildings or nearly zero energy building. Green roofs represent a valid constructive solution with high thermal performances, adopted in existing and new buildings. The purpose of the research regards the study of the thermo-hygrometric behavior of the concrete and Cross-Laminated Timber (CLT) slabs, insulated with coconut fibre-boards (CF) such as alternative synthetic insulators, referred to 10 different green roo…

Engineeringgreen roofZero-energy buildingbusiness.industry020209 energyGreen roof0211 other engineering and technologies02 engineering and technologyCivil engineeringcoconuts fibreSynthetic materialsThermal insulationmoisture021105 building & construction0202 electrical engineering electronic engineering information engineeringthermal insulationFiberbusiness
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Some European green roof norms and guidelines through the lens of biodiversity : do ecoregions and plant traits also matter?

2018

Abstract Green infrastructure and in particular green roofs are crucial to meet the challenge of sustainable urbanisation fostered by the current European Research and Innovation agenda. Several documents were issued in the last decades in Europe for regulating the design, construction and up-keep of roof greening. In particular, the actual German guidelines have been widely adopted as a reference basis for green roof design and regulation worldwide, because of its exhaustiveness and proven building- and landscaping tradition. With the aim to assess the effectiveness of green roof guidelines and norms in supporting plant and soil biodiversity in different ecoregions, and particularly of the…

Environmental Engineering010504 meteorology & atmospheric sciencesSoil biodiversitySettore AGR/13 - Chimica AgrariaGreen roofBiodiversity010501 environmental sciencesManagement Monitoring Policy and Law01 natural sciencesGermanEcoregion577: Ökologie0105 earth and related environmental sciencesNature and Landscape ConservationSettore ICAR/15 - Architettura Del PaesaggioBiodiverse green roofs Ecological design Biogeographic regions Nature-based solutions Policiesbusiness.industryEnvironmental resource managementlanguage.human_languageGeographySettore BIO/03 - Botanica Ambientale E ApplicatalanguageLandscapingNorm (social)Green infrastructurebusiness
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Evaluating the thermal-radiative performance of ENVI-met model for green infrastructure typologies: Experience from a subtropical climate

2022

Abstract Microclimate knowledge has been intensively integrated into urban planning and design to improve the buildings’ energy performance and outdoor thermal comfort. To assess the climatic mitigation strategies, numerical modeling is gaining higher relevance. ENVI-met, a microclimate model to simulate the complex surface-vegetation-atmosphere interactions in the built environment, is receiving increasing popularity. This study aims to systematically evaluate the thermal-radiative performance of the ENVI-met model based on its recent updates. First, a field measurement was conducted in a subtropical city. Thermal-radiative parameters were collected besides three green infrastructure (GI) …

Environmental EngineeringForcing (recursion theory)Computer scienceGeography Planning and DevelopmentGreen roofMicroclimateThermal comfortBuilding and ConstructionCivil engineeringUrban planningGreen infrastructureGreen wallBuilt environmentCivil and Structural EngineeringBuilding and Environment
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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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Disposal of green roofs: A contribution to identifying an “Allowed by legislation” end–of–life scenario and facilitating their environmental analysis

2022

The rapid and widespread deployment of green roofs requires the need to address their disposal and to assess the environmental impact of this phase of their life cycle to understand whether their current large-scale application may pose a problem. A review of the literature on green roofs environmental performance (particularly Life Cycle Assessment studies) has highlighted the lack of a standardized, commonly adopted, procedure for determining the treatments, recovery and/or disposal, to be assigned to waste from the removal of green roofs. In this regard, it should be mentioned that there is a lack of ad hoc legislation on the disposal of this technology (to the best of the authors’ knowl…

Environmental impactDisposalEnvironmental EngineeringRecovery and/or disposal treatmentEuropean Waste CatalogueGreen roofGeography Planning and DevelopmentEnd-of-life scenarioBuilding and ConstructionCivil and Structural EngineeringBuilding and Environment
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