印度尼西亚雅加达萨里纳浮雕的鉴定、修复和重塑:时间、空间和技术的限制

IF 2.6 1区 艺术学 Q2 CHEMISTRY, ANALYTICAL Heritage Science Pub Date : 2024-07-04 DOI:10.1186/s40494-024-01346-7
Yuke Ardhiati, Asikin Hasan
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引用次数: 0

摘要

印度尼西亚雅加达的 Sarinah 历史建筑改造项目(2020-2022 年)是通过科学的保护过程对原建筑进行改造再利用。因此,本研究对 Sarinah 浮雕的高浮雕(alto-relievo)和中浮雕(mezzo-relievo)进行了识别、修复和重塑。在发现浮雕的地方,采用了侵入式拆除方法,通过拆除浮雕所在位置上方的两层建筑,形成一个中庭空间,以展示艺术品的重现。非侵入性方法的实施:(a) 识别损坏的测绘文物;(b) 修复、清洁和修补破损的文物;(c) 重新制作三维模型。所有活动都得到了笛卡尔图坐标、AutoCAD、Adobe Photoshop、Zbrush 软件和近距离摄影测量等数字应用程序的支持。该案例研究对遗产科学的贡献在于展示了在时间、空间和技术限制条件下修复中音浮雕和夹层浮雕的过程。
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Identifying, restoring, and remastering of the Sarinah relief sculpture in Jakarta of Indonesia: the limitations of time, space, and technology

The Sarinah historic building transformation project in Jakarta, Indonesia (2020–2022) is an adaptive reuse of the original building formed through a scientific conservation process. Therefore, this research identified, restored, and remastered the Sarinah relief sculpture of alto-relievo (high relief) and mezzo-relievo (medium relief). The invasive demolition method was used to form an atrium space to show the reappearance of the artwork by dismantling two layers of building floors above where the relief was found. The non-invasive method was implemented (a) by identifying damaged mapping artifacts, (b) by restoring, cleaning, and repairing the broken artifacts, and (c) by remastering the 3D model. All activities were supported by digital applications such as the Cartesian diagram coordinates, AutoCAD, Adobe Photoshop, Zbrush software, and close-range photogrammetry. The case study's contribution to heritage science showed the process used to restore alto-relievo and mezzo-relief within time, space, and technology limitations.

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来源期刊
Heritage Science
Heritage Science Arts and Humanities-Conservation
CiteScore
4.00
自引率
20.00%
发文量
183
审稿时长
19 weeks
期刊介绍: Heritage Science is an open access journal publishing original peer-reviewed research covering: Understanding of the manufacturing processes, provenances, and environmental contexts of material types, objects, and buildings, of cultural significance including their historical significance. Understanding and prediction of physico-chemical and biological degradation processes of cultural artefacts, including climate change, and predictive heritage studies. Development and application of analytical and imaging methods or equipments for non-invasive, non-destructive or portable analysis of artwork and objects of cultural significance to identify component materials, degradation products and deterioration markers. Development and application of invasive and destructive methods for understanding the provenance of objects of cultural significance. Development and critical assessment of treatment materials and methods for artwork and objects of cultural significance. Development and application of statistical methods and algorithms for data analysis to further understanding of culturally significant objects. Publication of reference and corpus datasets as supplementary information to the statistical and analytical studies above. Description of novel technologies that can assist in the understanding of cultural heritage.
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