Abstract
This paper first introduces the design and key technologies of the whole interactive VR system, focusing on the principle of the node-based interactive VR system program, the integration of available modules, and the architecture of the plug-in system. It also allows developers to use visualization programs to create scenarios to complete the required design activities. Based on this, this paper uses PSR rough sets and ARIMA model to evaluate the spatial structure strength of beach stability under the combined action of natural and human factors, clarify the potential factors, and to some extent predict the future development trend of L beach. The results of this study illustrate the law of estuarine bank erosion and the theory of ecological stability, which is of great significance to regional wetland safety and beach stability. Finally, by using the methods of literature survey and network survey, this paper selects 13 different first-level public libraries as samples to investigate and study the development of bookbinding mode. There are four characteristics of library bookbinding: personalized intelligent service, interactive three-dimensional service, space reconstruction service, and virtual experience service. At the same time, the paper analyzes the existing problems and points out that it is urgent to strengthen the bookbinding management plan of public libraries and strengthen the service scope and depth of public libraries, so as to improve the necessary functional requirements of public libraries. Moreover, the bookbinding plans of public libraries in different regions are unbalanced and need to be improved. In this paper, the results of the research on the stability of coastal beaches based on interactive VR technology are applied to the bookbinding design of the city library, so as to promote the development of the bookbinding design of the city library.
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Xiaohui, Z. (2021, September 1). Influence of coastal beach stability based on interactive VR technology and bookbinding design of city library. Arabian Journal of Geosciences. Springer Science and Business Media Deutschland GmbH. https://doi.org/10.1007/s12517-021-08123-x
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