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Yan Yang Shozo Nakamura Baochun Chen Takafumi NishikawaArch bridges Arches Deformation Dual system Field test Hinged arches Internal force Internal forces Mechanical behavior timber Two-hinged arch Weaving Woven timber arch bridge deformation finite element method force heritage conservation loading test mechanical property timber
Yang, Y., Nakamura, S., Chen, B., & Nishikawa, T. Mechanical behavior of Chinese woven timber arch bridges. 195, 340-357. https://doi.org/10.1016/j.engstruct.2019.05.068
Yan Yang Shozo Nakamura Baochun Chen Takafumi NishikawaArch bridges Arches Deformation Dual system Field test Hinged arches Internal force Internal forces Mechanical behavior timber Two-hinged arch Weaving Woven timber arch bridge deformation finite element method force heritage conservation loading test mechanical property timber
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Barbara Gminska-Nowak Tomasz WaznyBuddhist architecture Carangidae Coniferophyta Dhaulagiri Juniperus Kingdom of Lo Larix Mustang Nepal Pinus wallichiana Pinuswallichiana A.B. Jacks Upper Mustang coniferous tree construction material dendroarchaeology dendrochronology master chronology plant architecture timber tree ring wood
Cai, D., & Huai, Y. (2018). Application of interactive forestry science popularisation based on enhanced experience. Ippta: Quarterly Journal Of Indian Pulp And Paper Technical Association, 30, 190-196. Retrieved de https://www.scopus.com/inward/record.uri?eid=2-s2.0-85057204231&partnerID=40&md5=e30fbe3affdff7452b7e7a36286ae067
D. Cai Y. HuaiApplication Art of Flower Arrangement Augmented reality Chinese Dimensions Displaying Enhanced Experience Forestry Forestry Science Popularisation Forestry science Image enhancement Interactive applications Interactive applications Research Science Technology Three Dimensional Images Three dimensional computer graphics Three dimensional images timber