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        Application of VR interactive technology in graphic design of ceramic materials

        Shiqiu Gu,Xiaogang Xing* 한양대학교 청정에너지연구소 2023 Journal of Ceramic Processing Research Vol.24 No.3

        Design has changed in a way that has been closely tied to the growth of human culture and civilization. A society's growthaffects every aspect of human productivity and daily living. A type of ceramic product known as "alive ceramics" has bothutilitarian and decorative appeal. Even though living ceramics are recognized as an ancient and traditional art form in ournation, user demands and preferences must come first in their design. Human-centered design has become a mature andthoroughly researched subject in our day. Designing ceramic objects requires careful consideration of humanization. Virtualreality (VR) testing and evaluation of ceramic products is now possible because of advancements in VR technology. Througha computer-generated virtual model, this lets designers and buyers experience and evaluate the benefits and drawbacks of aproduct prior to its construction. A recent study has shown that the human-centered design method can be considerablyenhanced by incorporating virtual reality (VR) technology into the design process for living ceramics. Using VR, designers canmimic real-world environments and gather essential user feedback to enhance the overall design of the product. Additionally,the use of VR technology enables more effective and economical design iterations. In this project, we'll look into how humancentereddesign and virtual reality (VR) technology may be used to research living ceramic design.

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        Comparison of Chlorophyll Algorithms in the Bohai Sea of China

        Peng Xiu,Yuguang Liu,Zengrui Rong,Haibo Zong,GangLi,Xiaogang Xing,Yongcun Cheng 한국해양과학기술원 2007 Ocean science journal Vol.42 No.4

        Empirical band-ratio algorithms and artificial neural network techniques to retrieve sea surface chlorophyll concentrations were evaluated in the Bohai Sea of China by using an extensive field observation data set. Bohai Sea represents an example of optically complex case II waters with high concentrations of colored dissolved organic matter (CDOM). The data set includes coincident measurements of radiometric quantities and chlorophyll a concentration (Chl), which were taken on 8 cruises between 2003 and 2005. The data covers a range of variability in Chl in surface waters from 0.3 to 6.5 mg m-3. The comparison results showed that these empirical algorithms developed for case I and case II waters can not be applied directly to the Bohai Sea of China, because of significant biases. For example, the mean normalized bias (MNB) for OC4V4 product was 1.85 and the root mean square (RMS) error is 2.26.

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