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8篇 您的检索式:作者名="II Wen"
    题名 作者 年代 出处 被引量
1AGO for invariant series显示文摘WEN Kun Ii WU J H 1998The Journal of Grey System1998,10,1:1
2Comparison Among Gonadotropins in Inducing the Anestrous Female Minks to Come Into an Estrous State显示文摘ZHOU Han-Sheng WEN Zhang-Wen A Study on Increasing the Fertility of Minks(mustela vison): II 2000J Wuhan Univ(Nat Sci Ed)2000,46,2:1
3Some New Perturbation Bounds for the Generalized Polar Decomposition 显示文摘CHEN Xiaoshan II Wen SUN Wciwci 2004BIT Numcr Math2004,44,2:1
4New Perturbation Bounds for Unitary Polar Factors 显示文摘II Wen SUN Wciwci 2003SIAM J Matrix Anal Appl2003,25,2:1
5Infrafamilial relationships and characters in Araliaceae: insights from the phylogenetic analysis of nuclear (ITS) and plastid (trnL-tmF) sequence data 显示文摘Plunkett GM Wen J Lowry II PP 2004a 2004Plant Syst Etol2004,245,:1
6Aralia hiepiana J Wen & Lowry, a new species of Amliaceae from Vietnam 显示文摘Wen J Lowry II PP 2002 2002Adansonia2002,24,:1
7AGO for invariant sefies显示文摘WEN Kun Ii WU J H 0,,01:1
8Enhancement and validation of building integrated PV system:3D modelling,techno-economics and environmental assessment显示文摘The incorporation of photovoltaic elements in buildings have been gaining more mileage in recent times.Building integrated photovoltaic(BIPV)technologies are on the rise in terms of efficiency and longevity,with a compound annual growth rate(CAGR)of 15.7%since 2018.The costs of production and raw materials of BIPV have reached a level that is economically beneficial for building developers to adopt the technology.However,the lack of infras-tructure as compared to traditional means of energy production has impeded the maturing of such technologies.The issue of conversion efficiency and module degradation have been addressed but not completely resolved by the scientific community.Although attractive governmental incentives such as net energy metering(NEM)and better returns of investments are shifting the tide as of late,what remains to be seen is the mass adoption of BIPV technology in residential and commercial infrastructure.This work aims to develop an optimal layout for photo-voltaic panels in the university building precise 3D modelling and solar energy resource assessment.The method adopted is based on energy production capability of a 3D modelled BIPV system which will be carried out in three stages.They are i)Assessment of geographical location and meteorological data,ii)Development of 3D model and orientation analytics and(iii)Development of optimal PV layout.Three systems were considered for this study,which is the roof and two systems on the Southern Façade.The proposed rooftop BIPV design is expected to provide 49.27%of the building’s energy consumption while reducing CO_(2)emissions by 20155.32 tonnes throughout the lifespan of the system’s deployment.This paper serves as a pioneering study on the feasibility of a BIPV system through the incorporation of building geometry for computations on incident solar irradiation.Through the reduction of electricity imported from the grid,the adoption of the BIPV system also serves as an incremental step towards achieving Net Zero Energy Building(NZEB)status for HWUM.Edmund Jin Wen Thoy Yun Ii Go 2022Energy and Built Environment2022,3,4:0
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