|
1.Bouvard, O., Vanzo, S., Schuler, A., 2015. Experimental Determination of Optical and Thermal Properties of Semi-transparent Photovoltaic Modules Based on Dye-sensitized Solar Cells. Energy Procedia, Volume 78, pp. 453-458. 2.Chen, F., Wittkopf, S.K., Poh, K.N., and Du, H., 2012. Solar heat gain coefficient measurement of semi-transparent photovoltaic modules with indoor calorimetric hot box and solar simulator. Energy and Buildings, Volume 53, pp. 74-84. 3.Cornaro, C., Basciano, G., Puggioni, V.A., and Pierro, M., 2017. Energy Saving Assessment of Semi-Transparent Photovoltaic Modules Intergrated into NZEB. 4.Fung, T.Y.Y., Yang, H., 2008. Study on thermal performance of semi-transparent building-integrated photovoltaic glazings. Energy and Buildings, 40(3), pp. 341-350. 5.Kuo, H.J., Hsieh, S.H., Guo, R.C., Chan, C.C, 2016. A verification study for energy analysis of BIPV buildings with BIM. Energy and Buildings, Volume 130, pp. 676-691. 6.Le, H.N., 2011. Simulation of the impact of window-related designs on energy consumption in office buildings using eQUEST, s.l.: s.n. 7.Le, N.H., 2012. Study on Double-Skin Facade (DSF) Design for Office Buildings, s.l.: s.n. 8.Mai, P.K., 2013. Energy Efficiency of Double-Glazed Windows and Their Effects on Window-to-Wall Ratio, s.l.: s.n. 9.Miyazaki, T., Akisawa, A., Kashiwagi, T., 2005. Energy savings of office buildings by the use of semi-transparent solar cells for windows. Renewable Energy, 30(3), pp. 281-304. 10.Olivieri, L., 2016. Performance of Semi-transparent Photovoltaic Façades. Nano and Biotech Based Materials for Energy Building Efficiency, pp. 279-320. 11.Olivieri, L., Caamano-Martin, E., Moralejo-Vazquez, F.J., Martin-Chivelet, N., Olivieri, F., Neila-Gonzalez, F.J., 2014. Energy saving potential of semi-transparent photovoltaic elements for building integration. Energy, Volume 76, pp. 572-583. 12.Olivieri, L., Frontini, F., Polo-Lopez, C., Pahud, D., Caamano-Martin, E., 2015. G-value indoor characterization of semi-transparent photovoltaic elements for building integration: New equipment and methodology. Energy and Buildings, Volume 101, pp. 84-94. 13.Polo, J. et al., 2014. Maps of solar resource and potential in Vietnam, Hanoi: Ministry of Industry and Trade of The Socialist Republic of Vietnam. 14.Traverse, C.J., Pandey, R., Barr, M.C., and Lunt, R.R, 2017. Emergence of highly transparent photovoltaics for distributed applications. Nature Energy. 15.Wang, M., Peng, J., Li, N., Lu, L., Yang, H., 2017. Experimental Study on Thermal Performance of Semi-transparent PV Window in Winter in Hong Kong. Energy Procedia, Volume 105, pp. 864-868.
|