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- W2754084975 abstract ": The exposure of an individual to heat during hot weather depends on several factors includinglocal outdoor temperatures and possible Urban Heat Island (UHI) effects, the thermal performance of thebuilding they inhabit, and any actions that they are able to take in order to modify the indoor thermalconditions. There is an increasing body of research that seeks to understand how housing, UHI, andoccupant profiles may alter the risk of mortality during hot weather. Housing overheating models havebeen of particular interest due to the amount of time spent indoors and the need to improve the energyefficiency of the UK housing stock. A number of housing overheating models have been created in order tounderstand how changes to the building stock and climate may alter heat exposure and risks of heatrelatedmortality. We briefly describe the development of a metamodel – a model derived from theoutputs of EnergyPlus dynamic thermal simulation models of building variants – and its application to ahousing stock model representative of the West Midlands, UK. We model the stock under a ‘current’scenario, as described by the 2010-2011 English Housing Survey, and then following a full energy-efficientbuilding fabric retrofit or the installation of external window shutters. Initial results indicate a wide range ofoverheating risks inside dwelling variants in Birmingham, with flats and bungalows most vulnerable tooverheating, and detached dwellings least vulnerable. Modelling of the full retrofit of buildings indicatedthat the stock would experience an overall increase in overheating, while external shutters were able todecrease overheating significantly." @default.
- W2754084975 created "2017-09-25" @default.
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- W2754084975 date "2016-06-30" @default.
- W2754084975 modified "2023-09-28" @default.
- W2754084975 title "Modelling population exposure to high indoor temperatures under changing climates, housing conditions, and urban environments in England" @default.
- W2754084975 hasPublicationYear "2016" @default.
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