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- 01GXPAPGBWS5QH5A6P51426PSB classification C1.
- 01GXPAPGBWS5QH5A6P51426PSB date "2022".
- 01GXPAPGBWS5QH5A6P51426PSB language "eng".
- 01GXPAPGBWS5QH5A6P51426PSB type conference.
- 01GXPAPGBWS5QH5A6P51426PSB hasPart 01GXPB6RZD1D3J65227EWAR0ZA.docx.
- 01GXPAPGBWS5QH5A6P51426PSB subject "Arts and Architecture".
- 01GXPAPGBWS5QH5A6P51426PSB presentedAt urn:uuid:6016bc6b-ffa4-4306-aa03-2c3787ca29df.
- 01GXPAPGBWS5QH5A6P51426PSB abstract "Metropolitan areas have their specific climate. The main distinguishing aspect of this climate is a marked increase in temperature within the urban canyons compared to suburban areas, referred known as the urban heat island. This phenomenon is primarily caused by widespread industrialisation and rapid urbanisation, which increase the man-made heat from fossil fuel combustion and decreased greenery. The urban heat island effect might have an effect on building structures, particularly historical buildings. Mashhad is Iran’s second-largest city and one of the important Muslim pilgrimage centres. It hosts some unique Timurid heritage that may be impacted by this phenomenon. The scope of this study is to investigate the effects of the urban heat island on Mashhad’s Timurid heritage by employing hygrothermal modelling. The existence of the urban heat island in the city is assessed by comparing climatic data recorded in two stations inside the city, Mashhad synoptic station and a rural station. Following that, the hygrothermal behaviour of building components is modelled during 2019–2020 based on studied climatic data to deliver a more detailed knowledge of this phenomenon’s impact on Timurid heritage. The analytical results indicate that a clear urban heat island exists in this city, particularly during summers resulting in a greater ambient temperature and relative humidity, followed by a notable decrease in wind velocity, which led to a significant decrease in wind-driven rain and the moisture content of building elements in urban canyons comparing to the outer layers of the city and rural areas. Additionally, due to the higher material’s relative humidity during warm months, the risk of bio-deterioration and mould growth has been increased.".
- 01GXPAPGBWS5QH5A6P51426PSB author 3A06A1EC-5B13-11E9-BA73-4F7A5607D3EF.
- 01GXPAPGBWS5QH5A6P51426PSB author F822C864-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GXPAPGBWS5QH5A6P51426PSB dateCreated "2023-04-10T19:36:15Z".
- 01GXPAPGBWS5QH5A6P51426PSB dateModified "2024-12-12T21:14:53Z".
- 01GXPAPGBWS5QH5A6P51426PSB name "Conservation of heritage buildings in Iran : on the impact of the urban heat island on building material hygrothermal performance".
- 01GXPAPGBWS5QH5A6P51426PSB pagination urn:uuid:12fc17d4-ea13-4df5-92a7-d5404597aa17.
- 01GXPAPGBWS5QH5A6P51426PSB sameAs LU-01GXPAPGBWS5QH5A6P51426PSB.
- 01GXPAPGBWS5QH5A6P51426PSB sourceOrganization urn:uuid:72f55c92-ae5d-4b3c-a157-c6d4162b7c9e.
- 01GXPAPGBWS5QH5A6P51426PSB type C1.