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Canyon geometry and the nocturnal urban heat island: Comparison of scale model and field observations

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TLDR
In this paper, a simple hardware scale model is used to simulate nocturnal cooling rates for rural and urban environments under calm and cloudless conditions, and the results of the experiments show that canyon geometry in the central portion of a city (as measured by the sky view factor) is a relevant variable in producing nocturnurnal urban heat islands due to its role in regulating long-wave radiative heat loss.
Abstract
A simple hardware scale model is used to simulate nocturnal cooling rates for rural and urban environments under calm and cloudless conditions. Comparison with field observations gathered under similar conditions shows the model capable of reproducing many of the features of the temporal development of urban heat islands and the long-wave radiative exchange in urban canyons. The model is used to investigate the roles played by rural/urban differences in geometry and thermal admittance. The results of the experiments show that canyon geometry in the central portion of a city (as measured by the sky view factor) is a relevant variable in producing nocturnal urban heat islands due to its role in regulating long-wave radiative heat loss. It is also demonstrated that this measure is central to the relationship between city size and heat island intensity. The importance of canyon geometry as a feature of urban design is discussed. Thermal admittance differences can also produce realistic heat island features but their magnitude requires quantification in the field.

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Citations
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Implementing a Geometry-Related Environmental Indicator in a 3D-GIS

TL;DR: In this paper, the authors discuss the importance of diversity in the context of education, and propose a method to improve the quality of education for all students in the United States and Europe.
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Dark cities or cities of light? – sunlight amenity preservation at whole-city scale using a spatio-temporal decision support approach

TL;DR: In this article , a spatio-temporal design decision support system for analysing and protecting the light amenity of public open spaces, applied to a capital city in Australia, is described.
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Effects of Physical environmental factors on Radiation fluxes in Urban areas

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References
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Journal ArticleDOI

City size and the urban heat island

TL;DR: In this article, the authors demonstrate the relationship existing between the size of a village, town or city and the magnitude of the urban heat island it produces by analyzing data gathered by automobile traverses in 10 settlements on the St. Lawrence Lowland, whose populations range from 1000 to 2 million inhabitants.
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The distinction between canopy and boundary‐layer urban heat islands

TL;DR: In this paper, air temperature measurements from car traverses in and near Vancouver, BC are used to test two urban heat island models: one an empirical model, the other a theoretical advective model.
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Satellite Estimation of the Surface Energy Balance, Moisture Availability and Thermal Inertia.

TL;DR: In this article, a method for inferring the distribution of surface heat and evaporative fluxes and the ground moisture availability and thermal inertia (ground conductive capacity) was used to analyze two urbanized areas, Los Angeles and St. Louis.
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Urban heat island dynamics in Montreal and Vancouver

TL;DR: In this paper, the role of urban and rural surfaces in the growth and decay of the urban heat island was investigated and the results suggest that nocturnal energy exchange in the city is complex.