993 resultados para Heat island


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Forested areas within cities host a large number of species, responsible for many ecosystem services in urban areas. The biodiversity in these areas is influenced by human disturbances such as atmospheric pollution and urban heat island effect. To ameliorate the effects of these factors, an increase in urban green areas is often considered sufficient. However, this approach assumes that all types of green cover have the same importance for species. Our aim was to show that not all forested green areas are equal in importance for species, but that based on a multi-taxa and functional diversity approach it is possible to value green infrastructure in urban environments. After evaluating the diversity of lichens, butterflies and other-arthropods, birds and mammals in 31 Mediterranean urban forests in south-west Europe (Almada, Portugal), bird and lichen functional groups responsive to urbanization were found. A community shift (tolerant species replacing sensitive ones) along the urbanization gradient was found, and this must be considered when using these groups as indicators of the effect of urbanization. Bird and lichen functional groups were then analyzed together with the characteristics of the forests and their surroundings. Our results showed that, contrary to previous assumptions, vegetation density and more importantly the amount of urban areas around the forest (matrix), are more important for biodiversity than forest quantity alone. This indicated that not all types of forested green areas have the same importance for biodiversity. An index of forest functional diversity was then calculated for all sampled forests of the area. This could help decision-makers to improve the management of urban green infrastructures with the goal of increasing functionality and ultimately ecosystem services in urban areas.

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The study investigates the urban heat island effect in Malaysian historic town Malacca through seven mobile traverses, as carried out on 10 December 2011. It aims to identify the intra-urban air temperature differences between heritage core zone, new development area and outskirts of the city. Air temperature variations were also analyzed across three different zones; namely the outskirts, the heritage site and the city center district. Heat index values were then calculated based on air temperature and relative humidity to gauge the level of outdoor thermal comfort within the study area. Based on the indications, one may conclude that the heritage place’s core zone is currently threatened by escalating temperatures and that its current temperature range falls within the “caution” and “extreme caution” categories. Furthermore, no significant difference was observed between the peak temperatures of the old city quarters and newer areas; despite the disparities in their urban forms. Therefore, it is hoped that the study, with its implications, will be able to influence future environmental consideration in heritage city of Melaka.

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The number of hot days is increasing in many parts of the world because of the heat island phenomenon and global climate change. High air temperature greatly affects human thermal comfort and public health, particularly in urban areas. Therefore, the challenging task of, urban designers and urban planners in accommodating the increasing population is to make cities with the least level of vulnerability to future climate change. Interest in transferring urban climatic knowledge into urban planning practices, and developing mitigation strategies to adapt to climate change, has been increased in recent years. The use of vegetation and appropriate urban geometry are shown very promising in mitigating the adverse effects of heat island and providing a better pedestrian thermal comfort. This article reviews studies on pedestrian level urban greening and geometry in improving thermal comfort in cities. Such strategies can be applied at the preliminary stages of urban planning and thus directly affect the microclimate. The analyzed data include simulation and field measurement studies. The discussion of this research clearly reflects how urban design guidelines can be applied to enhance outdoor thermal comfort and minimize the heat island effect. This study is helpful in controlling the consequences of city design from the early design stage.

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Man made alterations have resulted in higher air temperatures in cities, compared to their surrounding rural areas. There are many attempts to modify the urban design elements to ameliorate urban heat island effect. One among them is the concept of green roofs. There is a potential to incorporate vegetation to the large roof area of the buildings. Several studies investigated the effect of micro and macro scale implementation of green roofs. Most of these studies examined the impact of green roofs on the air temperature variation at the roof level, whereas studies are lacking on the effect of green roof at the pedestrian level. Therefore, this study aims to explore the impact of green roofs on the air temperature at pedestrian level, in the central business district (CBD), using Melbourne as a case study. A generic layout of Melbourne's CBD is modelled using ENVI-met 3.1 BETA 4. A number of different scenarios with different green roof coverages and building heights are examined. It was found that green roofs did not have significant impact on the temperatures at pedestrian level.

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Les connaissances scientifiques sur le changement climatique (CC) évoluent rapidement. Toutefois, des incertitudes persistent sur l’étendue de ses conséquences, particulièrement dans les milieux urbains, qui subiront des impacts différents de ceux vécus par les milieux ruraux. Les autorités publiques ont récemment commencé à élaborer des politiques publiques d’adaptation au changement climatique (ACC) qui visent à en limiter les conséquences indésirables. En milieu urbain, la littérature suggère qu’un des outils que devraient privilégier ces politiques est le verdissement. Des auteurs signalent que les actions visant l’ACC peuvent se greffer dans des politiques existantes. L’ACC, comme enjeu public, peut donc être réalisée par l’entremise de sa prise en compte dans les politiques publiques de verdissement. Cette prise en compte devrait affecter le contenu (quoi?) et le pilotage (comment?) des différentes étapes des politiques. Le cas de la politique publique de verdissement de la Ville de Montréal, au Québec, nous a permis d’étudier cette prise en compte. En utilisant un cadre d’analyse des politiques publiques développé par Knoepfel et al. (2015), qui porte entre autres sur la mobilisation des ressources par différents acteurs concernés par ces politiques, nous montrons que cette dernière s’est opérée de quelques façons. Premièrement, il y a eu un changement dans l’argumentaire pour le verdissement, outil qui vise à lutter contre les îlots de chaleur urbains et assurer une meilleure gestion des eaux pluviales. Ensuite, le choix de l’échelle d’agglomération pour la prise en compte de l’ACC a entraîné un changement d’échelle dans la gestion du verdissement. La publication d’un plan d’action majeur de verdissement urbain pour l’agglomération, et dont le leitmotiv est l’ACC, le démontre. Quelques modifications réglementaires et l’inclusion de nouveaux acteurs dans la politique témoignent aussi que la prise en compte a eu lieu. Finalement, le plan d’action fournit un cadre pour la mise en œuvre du verdissement dans les zones les plus vulnérables au CC en plus d’une structure de partage des coûts. Cependant, la mise en oeuvre du verdissement dans une visée d’ACC n'a pas été évaluée dans la présente étude. Nous avons aussi noté que la biodiversité est un enjeu d’importance qui va de pair avec l’ACC dans la politique de verdissement. Il y a donc une prise en compte, partielle, de l’ACC dans la politique publique de verdissement à Montréal (avec certains écueils). Nous arguons que l’enjeu de l’ACC sert peut-être d’argument supplémentaire pour verdir la ville plutôt que d’être un véritable moteur de transformation de la politique de verdissement.

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Les connaissances scientifiques sur le changement climatique (CC) évoluent rapidement. Toutefois, des incertitudes persistent sur l’étendue de ses conséquences, particulièrement dans les milieux urbains, qui subiront des impacts différents de ceux vécus par les milieux ruraux. Les autorités publiques ont récemment commencé à élaborer des politiques publiques d’adaptation au changement climatique (ACC) qui visent à en limiter les conséquences indésirables. En milieu urbain, la littérature suggère qu’un des outils que devraient privilégier ces politiques est le verdissement. Des auteurs signalent que les actions visant l’ACC peuvent se greffer dans des politiques existantes. L’ACC, comme enjeu public, peut donc être réalisée par l’entremise de sa prise en compte dans les politiques publiques de verdissement. Cette prise en compte devrait affecter le contenu (quoi?) et le pilotage (comment?) des différentes étapes des politiques. Le cas de la politique publique de verdissement de la Ville de Montréal, au Québec, nous a permis d’étudier cette prise en compte. En utilisant un cadre d’analyse des politiques publiques développé par Knoepfel et al. (2015), qui porte entre autres sur la mobilisation des ressources par différents acteurs concernés par ces politiques, nous montrons que cette dernière s’est opérée de quelques façons. Premièrement, il y a eu un changement dans l’argumentaire pour le verdissement, outil qui vise à lutter contre les îlots de chaleur urbains et assurer une meilleure gestion des eaux pluviales. Ensuite, le choix de l’échelle d’agglomération pour la prise en compte de l’ACC a entraîné un changement d’échelle dans la gestion du verdissement. La publication d’un plan d’action majeur de verdissement urbain pour l’agglomération, et dont le leitmotiv est l’ACC, le démontre. Quelques modifications réglementaires et l’inclusion de nouveaux acteurs dans la politique témoignent aussi que la prise en compte a eu lieu. Finalement, le plan d’action fournit un cadre pour la mise en œuvre du verdissement dans les zones les plus vulnérables au CC en plus d’une structure de partage des coûts. Cependant, la mise en oeuvre du verdissement dans une visée d’ACC n'a pas été évaluée dans la présente étude. Nous avons aussi noté que la biodiversité est un enjeu d’importance qui va de pair avec l’ACC dans la politique de verdissement. Il y a donc une prise en compte, partielle, de l’ACC dans la politique publique de verdissement à Montréal (avec certains écueils). Nous arguons que l’enjeu de l’ACC sert peut-être d’argument supplémentaire pour verdir la ville plutôt que d’être un véritable moteur de transformation de la politique de verdissement.

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En los últimos años, la modificación que el medio urbano ejerce sobre el clima regional a una escala local, la llamada isla de calor urbana, ha sido uno de los fenómenos más estudiados, dado que tiene una relación directa con el confort y la calidad de vida de la población. Es por ello que el presente trabajo tiene por objeto presentar los primeros resultados de la estimación la isla de calor urbana en Santa Teresita, una localidad balnearia ubicada en el centro este de la provincia de Buenos Aires, a los 33º 33´ 00´´ S y 56º 41´ 00´´ O. La ciudad ha nacido y crecido con un fin turístico asociado al clima templado oceánico y a sus atractivas playas. Se efectuaron mediciones de temperatura del aire y humedad relativa a través de la ciudad para determinar la forma y la intensidad de la isla de calor urbano utilizando estaciones móviles e información de una estación meteorológica fija y datos del Servicio Meteorológico Nacional. La ciudad presenta una variación climática generada por las edificaciones, la incidencia del mar y de la vegetación, diferente a lo largo del día.Palabras Clave: Isla de calor urbana – Temperatura - Humedad relativa - Santa Teresita, ArgentinaAbstracIn the last years, the modification that the urban way exercises on the regional climate to a local scale, the so called urban heat island, has been one of the most studied phenomena ast it has a direct relation with the comfort and quality of life of the population. It is for it that the present work takes as an object present the initial results of estimating the urban heat island in Santa Teresita, a touristic locality located in the central eastern province of Buenos Aires, the 33º 3 ‘00 “ S and 56º40‘00 “ W. The city was born and grew up with a tourism associated with the moderate oceanic climate and with their attractive beaches. There were effected measurements of temperature of the air and relative dampness across the city to determine the form and the intensity of the urban heat island using mobile stations and information from a wheater station data sets and the Meteorological National Service. The city has a diverged climate generated by the buildings, the incident of the sea and of the vegetation, different throughout the day.Key words: Urban heat island - Temperature - Relative dampness - Santa Teresita, Argentina.

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In this article, we present a study on the surface energy balance of a polygonal tundra landscape in northeast Siberia. The study was performed during half-year periods from April to September in each of 2007 and 2008. The surface energy balance is obtained from independent measurements of the net radiation, the turbulent heat fluxes, and the ground heat flux at several sites. Short-wave radiation is the dominant factor controlling the magnitude of all the other components of the surface energy balance during the entire observation period. About 50% of the available net radiation is consumed by the latent heat flux, while the sensible and the ground heat flux are each around 20 to 30%. The ground heat flux is mainly consumed by active layer thawing. About 60% of the energy storage in the ground is attributed to the phase change of soil water. The remainder is used for soil warming down to a depth of 15 m. In particular, the controlling factors for the surface energy partitioning are snow cover, cloud cover, and the temperature gradient in the soil. The thin snow cover melts within a few days, during which the equivalent of about 20% of the snow-water evaporates or sublimates. Surface temperature differences of the heterogeneous landscape indicate spatial variabilities of sensible and latent heat fluxes, which are verified by measurements. However, spatial differences in the partitioning between sensible and latent heat flux are only measured during conditions of high radiative forcing, which only occur occasionally.

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In this study, we present the winter time surface energy balance at a polygonal tundra site in northern Siberia based on independent measurements of the net radiation, the sensible heat flux and the ground heat flux from two winter seasons. The latent heat flux is inferred from measurements of the atmospheric turbulence characteristics and a model approach. The long-wave radiation is found to be the dominant factor in the surface energy balance. The radiative losses are balanced to about 60 % by the ground heat flux and almost 40 % by the sensible heat fluxes, whereas the contribution of the latent heat flux is small. The main controlling factors of the surface energy budget are the snow cover, the cloudiness and the soil temperature gradient. Large spatial differences in the surface energy balance are observed between tundra soils and a small pond. The ground heat flux released at a freezing pond is by a factor of two higher compared to the freezing soil, whereas large differences in net radiation between the pond and soil are only observed at the end of the winter period. Differences in the surface energy balance between the two winter seasons are found to be related to differences in snow depth and cloud cover which strongly affect the temperature evolution and the freeze-up at the investigated pond.

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Heat and mass transfer studies in a calandria based reactor is quite complex both due to geometry and due to the complex mixing flow. It is challenging to devise optimum operating conditions with efficient but safe working range for such a complex configuration. Numerical study known to be very effective is taken up for investigation. In the present study a 3D RANS code with turbulence model has been used to compute the flow fields and to get the heat transfer characteristics to understand certain design parameters of engineering importance. The angle of injection and of the coolant liquid has a large effect on the heat transfer within the reactor.

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Processing of a recently acquired seismic line in the northeastern South China Sea by Project 973 has been conducted to study the character and the distribution of gas hydrate Bottom-Simulating Reflectors (BSRs) in the Hengchun ridge. Analysis of different-type seismic profiles shows that the distribution of BSRs can be revealed to some extents by single-channel profile in this area, but seismic data processing plays an important role to resolve the full distribution of BSRs in this area. BSR' s in the northeastern South China Sea have the typical characteristics of BSRs on worldwide continental margins: they cross sediment bed reflections, they are generally parallel to the seafloor and the associated reflections have strong amplitude and a negative polarity. The characteristics of BSRs in this area are obvious and the BSRs indicate the occurrence of gas hydrate-bearing sediments in the northeastern South China Sea. The depth of the base of the gas-hydrate stability zone was calculated using the phase stability boundary curve of methane hydrate and gas hydrate with mixture gas composition and compared with the observed BSR depth. If a single gradient geothermal curve is used for the calculation, the base of the stability zone for methane hydrate or gas hydrate with a gas mixture composition does not correspond to the depth of the BSRs observed along the whole seismic profile. The geothermal gradient therefore changes significantly along the profile. The geothermal gradient and heat flow were estimated from the BSR data and the calculations show that the geothermal gradient and heat flow decrease from west to east, with the increase of the distance from the trench and the decrease of the distance to the island arc. The calculated 2 heat flow changes from 28 to 64 mW/m(2), which is basically consistent with the measured heat flow in southwestern offshore Taiwan.

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This article discusses seasonal and interannual variations of the evapotranspiration (ET) rates in Bananal Island floodplain, Brazil. Measurements included ET and sensible heat flux using the eddy covariance method, atmospheric forcings (net radiation, Rn, vapor pressure deficit, VPD, wind speed and air temperature), soil moisture profiles, groundwater level and flood height, taken from November 2003 to December 2006. For the hydrological years (October-September) of 2003/2004, 2004/2005 and 2005/2006, the accumulated precipitation was 1692, 1471, 1914 mm and the accumulated ET was 1361, 1318 and 1317 mm, respectively. Seasonal analyses indicated that ET decreased in the dry season (average 3.7 mm day(-1)), despite the simultaneous increase in Rn, air temperature and VPD. The increase of ET in the wet season and particularly in the flood period (average 4.1 mm day(-1)) showed that the free water surface evaporation strongly influenced the energy exchange. Soil moisture, which was substantially depleted during the dry season, and adaptative vegetation mechanisms such as leaf senescence contributed to limit the dry season ET. Strong drainage within permeable sandy soils helped to explain the soil moisture depletion. These results suggest that the Bananal flooding area shows a different pattern in relation to the upland Amazon forests, being more similar to the savanna strictu senso areas in central Brazil. For example, seasonal ET variation was not in phase with Rn; the wet season ET was higher than the dry season ET; and the system stored only a tiny memory of the flooding period, being sensitive to extended drought periods.

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Global climate change is impacting coral reefs worldwide, with approximately 19% of reefs being permanently degraded, 15% showing symptoms of imminent collapse, and 20% at risk of becoming critically affected in the next few decades. This alarming level of reef degradation is mainly due to an increase in frequency and intensity of natural and anthropogenic disturbances. Recent evidence has called into question whether corals have the capacity to acclimatize or adapt to climate changes and some groups of corals showed inherent physiological tolerance to environmental stressors. The aim of the present study was to evaluate mRNA expression patterns underlying differences in thermal tolerance in specimen of the common reef-building coral Pocillopora verrucosa collected at different locations in Bangka Island waters (North Sulawesi, Indonesia). Part of the experimental work was carried out at the CoralEye Reef Research Outpost (Bangka Island). This includes sampling of corals at selected sites and at different depths (3 and 12 m) as well as their experimental exposure to an increased water temperature under controlled conditions for 3 and 7 days. Levels of mRNAs encoding ATP synthase (ATPs) NADH dehydrogenase (NDH) and a 70kDa Heat Shock Protein (HSP70) were evaluated by quantitative real time PCR. Transcriptional profiles evaluated under field conditions suggested an adaptation to peculiar local environmental conditions in corals collected at different sites and at the low depth. Nevertheless, high–depth collected corals showed a less pronounced site-to-site separation suggesting more homogenous environmental conditions. Exposure to an elevated temperature under controlled conditions pointed out that corals adapted to the high depth are more sensitive to the effects of thermal stress, so that reacted to thermal challenge by significantly over-expressing the selected gene products. Being continuously exposed to fluctuating environmental conditions, low-depth adapted corals are more resilient to the stress stimulus, and indeed showed unaffected or down-regulated mRNA expression profiles. Overall these results highlight that transcriptional profiles of selected genes involved in cellular stress response are modulated by natural seasonal temperature changes in P. verrucosa. Moreover, specimens living in more variable habitats (low-depth) exhibit higher basal HSP70 mRNA levels, possibly enhancing physiological tolerance to environmental stressors.