This research pioneers the integration of geographic information systems(GIS)and 3D modeling within a virtual reality(VR)framework to assess the viability and planning of a 20 MW hybrid wind-solarphotovoltaic(PV)syste...This research pioneers the integration of geographic information systems(GIS)and 3D modeling within a virtual reality(VR)framework to assess the viability and planning of a 20 MW hybrid wind-solarphotovoltaic(PV)system connected to the local grid.The study focuses on Dakhla,Morocco,a region with vast untapped renewable energy potential.By leveraging GIS,we are innovatively analyzing geographical and environmental factors that influence optimal site selection and system design.The incorporation of VR technologies offers an unprecedented level of realism and immersion,allowing stakeholders to virtually experience the project's impact and design in a dynamic,interactive environment.This novel methodology includes extensive data collection,advanced modeling,and simulations,ensuring that the hybrid system is precisely tailored to the unique climatic and environmental conditions of Dakhla.Our analysis reveals that the region possesses a photovoltaic solar potential of approximately2400 k Wh/m^(2) per year,with an average annual wind power density of about 434 W/m^(2) at an 80-meter hub height.Productivity simulations indicate that the 20 MW hybrid system could generate approximately 60 GWh of energy per year and 1369 GWh over its 25-year lifespan.To validate these findings,we employed the System Advisor Model(SAM)software and the Global Solar Photovoltaic Atlas platform.This comprehensive and interdisciplinary approach not only provides a robust assessment of the system's feasibility but also offers valuable insights into its potential socio-economic and environmental impact.展开更多
随着建筑行业的转型升级,各类施工风险的发生概率随之攀升。为应对这些挑战,建筑信息模型(Building Information Modeling,BIM)与虚拟现实(Virtual Reality,VR)技术的协同应用备受关注。研究以“VR”和“construction”为关键词,从Web o...随着建筑行业的转型升级,各类施工风险的发生概率随之攀升。为应对这些挑战,建筑信息模型(Building Information Modeling,BIM)与虚拟现实(Virtual Reality,VR)技术的协同应用备受关注。研究以“VR”和“construction”为关键词,从Web of Science核心合集数据库检索了2000—2021年间的期刊论文,运用CiteSpace对文献数据进行了系统梳理与可视化分析。结果表明VR技术与BIM的深度融合推动了工程安全管理的数字化转型;研究重点已从早期的潜在危险识别与预防,逐步转向以“人的因素”为核心的综合性研究。综合来看,BIM与VR技术的融合在施工安全预警、虚拟施工模拟及工程教育等领域具有显著优势。研究为推动数字建造领域的发展提供了理论参考。展开更多
文摘This research pioneers the integration of geographic information systems(GIS)and 3D modeling within a virtual reality(VR)framework to assess the viability and planning of a 20 MW hybrid wind-solarphotovoltaic(PV)system connected to the local grid.The study focuses on Dakhla,Morocco,a region with vast untapped renewable energy potential.By leveraging GIS,we are innovatively analyzing geographical and environmental factors that influence optimal site selection and system design.The incorporation of VR technologies offers an unprecedented level of realism and immersion,allowing stakeholders to virtually experience the project's impact and design in a dynamic,interactive environment.This novel methodology includes extensive data collection,advanced modeling,and simulations,ensuring that the hybrid system is precisely tailored to the unique climatic and environmental conditions of Dakhla.Our analysis reveals that the region possesses a photovoltaic solar potential of approximately2400 k Wh/m^(2) per year,with an average annual wind power density of about 434 W/m^(2) at an 80-meter hub height.Productivity simulations indicate that the 20 MW hybrid system could generate approximately 60 GWh of energy per year and 1369 GWh over its 25-year lifespan.To validate these findings,we employed the System Advisor Model(SAM)software and the Global Solar Photovoltaic Atlas platform.This comprehensive and interdisciplinary approach not only provides a robust assessment of the system's feasibility but also offers valuable insights into its potential socio-economic and environmental impact.
文摘随着建筑行业的转型升级,各类施工风险的发生概率随之攀升。为应对这些挑战,建筑信息模型(Building Information Modeling,BIM)与虚拟现实(Virtual Reality,VR)技术的协同应用备受关注。研究以“VR”和“construction”为关键词,从Web of Science核心合集数据库检索了2000—2021年间的期刊论文,运用CiteSpace对文献数据进行了系统梳理与可视化分析。结果表明VR技术与BIM的深度融合推动了工程安全管理的数字化转型;研究重点已从早期的潜在危险识别与预防,逐步转向以“人的因素”为核心的综合性研究。综合来看,BIM与VR技术的融合在施工安全预警、虚拟施工模拟及工程教育等领域具有显著优势。研究为推动数字建造领域的发展提供了理论参考。