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Home » Étude de cas » Seok-Ga Pagoda-Étude de cas

Seok-Ga Pagoda-Étude de cas

Publié le 3 mars 2017
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Seok-Ga Pagoda in built in VIII century in the court of the Bulkook (Bulguksa) temple, Kyung-Ju, Korea. The three-story pagoda is admired for its proportions and simple but graceful style.

Image Seok-Ga Pagoda-Étude de cas

It represents the finest style of Korean Buddhist pagodas that evolved from China’s multistoried pavilion-type wooden pagodas. Together with the Tabotap pagoda makes a unique composition: none of some thousand stone pagodas scattered across Korea excel them for profound philosophical depth and aesthetic charm. A paper scroll of the Pure Light Dharani Sutra, printed between 706 and 751 found in a pagoda in 1966, which is recognized as the world’s oldest printed material. Aging of material, exposure to outdoor conditions, and differential settlements make pagoda stones move. Since there is no mortar between the stones, the movement is relatively free and there is an elevated risk of pagoda distortion or serious damage. The view of the Seok-Ga pagoda is given in Figure 1, and the view of openings created between the stones is visible in Figure 2.

Aim of monitoring:

It was decided to monitor the pagoda to understand its structural behavior and control dimensional variations and movement of the basis. The results of monitoring are used to model the behavior and plan and optimize maintenance and conservation works. Long gauge sensors were installed along the basis while the inclinometers (tilt-meters) were installed on the second-floor stereo bate. The sensor position is schematically presented in Figure 3 and the view of sensors upon installation is in Figure 4. The sensors were surface mounted and protected with metallic plates. Inclinometers were also protected with for the purpose constructed boxes. Long-term continuous monitoring is performed.

INSTALLATION PERIODTYPE OF SENSORSNUMBER OF SENSORS
2004 – 2006SOFO12

 

Image

Figure 1: View to Seok-Ga Pagoda

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Figure 2: Openings created between the stones

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Figure 3: Sensors position

Related Papers:

Monitoring of Heritage Structures and Historical Monuments Using Long-Gage Fiber Optic Interferometric Sensors – An Overview, Branko Glisic, Daniele Inaudi, Daniele Posenato, Angelo Figini, Nicoletta Casanova , The 3rd International Conference on Structural Health Monitoring of Intelligent Infrastructure – SHMII-3, November 13-16 – (on conference CD) – 2007
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Concepteur et manufacturier d’instrumentation géotechnique, structurale et d’équipements de test pour le sol et la roche

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Concepteur et manufacturier d’instrumentation géotechnique, structurale et d’équipements de test pour le sol et la roche

Logo Telemac

Founisseur de solutions géotechniques et structurales depuis 1947

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Reconnaissance géologique, hydrogéologique
et géotechnique pour les projets les plus variés

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