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      Investigation of a tuff stone church in Cappadocia via acoustical reconstruction

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      Author(s)
      Adeeb, Ali Haider
      Gül, Zühre Sü
      Date
      2022-05-16
      Source Title
      Acoustics
      Print ISSN
      2624599X
      Publisher
      MDPI
      Volume
      4
      Issue
      2
      Pages
      419 - 440
      Language
      English
      Type
      Article
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      Abstract
      This study investigates the indoor acoustical characteristics of a Middle Byzantine masonry church in Cappadocia. The Bell Church is in partial ruins; therefore, archival data and the church’s remains are used for its acoustical reconstruction. The study aims to formulate a methodology for a realistic simulation of the church by testing the applicability of different approaches, including field and laboratory tests. By conducting qualitative and quantitative material tests, different tuff stone samples are examined from the region. Impedance tube tests are performed on the samples from Göreme and Ürgüp to document their sound absorption performances. Previous field tests on two sites in Cappadocia are also used to compare the sound absorption performance of tuff stones, supported by acoustical simulations. The texture, physical and chemical characteristics of the stones together with the measured sound absorption coefficient values are comparatively evaluated for selecting the most suitable material to be applied in the Bell Church simulations. The church was constructed in phases and underwent architectural modifications and additions over time. The indoor acoustical environment of the church is analyzed over objective acoustical parameters of EDT, T30, C50, C80, D50, and STI for its different phases with different architectural features and functional patterns. © 2022 by the authors. Licensee MDPI, Basel, Switzerland.
      Keywords
      Acoustical reconstruction
      Archaeoacoustics
      Cappadocia
      Church acoustics
      Tuff stone
      Permalink
      http://hdl.handle.net/11693/111899
      Published Version (Please cite this version)
      https://dx.doi.org/10.3390/ACOUSTICS4020026
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