Affiliation:
1. Graduate School of Engineering and Science, University of the Ryukyus, 1 Senbaru, Nakagami Gun, Nishihara Cho 903-0213, Okinawa, Japan
2. Department of Architectural and Building Engineering, Faculty of Engineering, University of the Ryukyus, 1 Senbaru, Nakagami Gun, Nishihara Cho 903-0213, Okinawa, Japan
Abstract
The architectural treasures of Zanzibar’s Stone Town, echoing the footprints of ancient civilizations, face an imminent threat of heritage loss due to accelerated material degradation. This underscores the urgent need for an intrinsic examination of building material properties to enhance existing restoration guidelines and effectively safeguard the historical legacy. This study is the first significant step for the extensive procurement of samples to investigate the physical, mechanical, and chemical properties of deteriorating coral stones, mortar, and wood material of Zanzibar’s Stone Town. The results indicate considerable water absorption and varying porosity and densities, highlighting the significant water retention and susceptibility of marine environmental factors. The compressive strength (CS) for coral stone, mortar, and wood falls under 7.6 MPa to 12.2 MPa, 0.5 to 0.9 MPa, and 52.9 to 69.3 MPa, revealing the heterogenous characteristics across the samples. The flexural strength of coral stone and wood was found to be from 2.0 MPa to 3.4 and 72.1 MPa to 98.6 MPa, indicating a high susceptibility to breakage and fracture. Meanwhile, Ultra Pulse Velocity (UPV) averages 1668 to 2070 m/s, revealing void ranges in building materials. Chemical analysis, including X-ray diffraction (XRD) and X-ray fluorescence (XRF), demonstrates higher CaO content in coral stone and mortar, with the predominant mineral aragonite indicating vulnerability to rapid chemical attacks. These results can significantly contribute to future modifications and improvements in restoration guidelines by facilitating the identification and utilization of appropriate materials’ properties. This ensures a high level of compatibility and promotes the sustainable conservation of Stone Town’s architectural heritage.
Reference62 articles.
1. Centre, U.W.H. (2024, February 18). Stone Town of Zanzibar. Available online: https://whc.unesco.org/en/list/173/.
2. Impact of Cultural Heritage Site Attributes to the Tourist Satisfaction in Zanzibar Stone Town, UNESCO World Heritage Site, Tanzania;Chami;Afr. J. Hosp. Tour. Leis.,2018
3. The Dialectics of Functional and Historical Morphology in the Evolution of a City: The Case of the Stone Town of Zanzibar;Rashid;J. Archit.,2012
4. Siravo, F. (1996). Zanzibar: A Plan for the Historic Stone Town, Taylor & Francis, Ltd.
5. Sheriff, A. (1995). The History & Conservation of Zanzibar Stone Town, Ohio University Press.
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