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GIS-BIM Framework for Integrating Urban Systems, Waste Stream and Algal Cultivation in Residential Construction

机译:GIS-BIM在住宅建筑中整合城市系统,废物流和藻类栽培的框架

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Among alternative energy sources for residential buildings, algae technology has emerged as a promising option due to its closed-loop configuration and the ability to produce biofuel energy while reducing waste stream flow and capturing carbon. Furthermore, this technology has the potential of integrating resource and waste management, and can be complemented with other alternatives, such as photovoltaic, wind or fuel cells. This paper provides a framework for integrating information from geographic information systems, building information models, construction schedules, construction cost estimates, and constructability reviews. The integration is aimed at designing an algae-powered residential building environment at the level of urban neighbourhood, in which the algae technology is taken as a design intervention to promote energy performance and carbon reduction within the urban system. This framework couples the design intervention with impact simulations influenced by geographic contexts, construction considerations, and digital building technology. By extending the system boundary from a closed algae cultivation system to an open neighbourhood-scale urban environment, urban renewable resources such as energy, water, material and carbon flows are connected to the algae cultivation process. The framework would further advance the possibilities for sharing information among planners, architects, engineers and construction managers for innovative closed-loop sustainable energy systems in residential construction. This approach will address challenges such as cost, governmental incentives, regulatory barriers, or need of research and development that could overcome limitations for automating predesign, design, construction and facility management processes.
机译:在住宅建筑的替代能源中,藻类技术由于其闭环配置和生产生物燃料能量而导致的承诺选项,同时减少废物流流程和捕获碳。此外,该技术具有集成资源和废物管理的潜力,并且可以与其他替代品相辅相成,例如光伏,风或燃料电池。本文提供了一种用于将信息从地理信息系统,建筑信息模型,施工时间表,施工成本估算和构造审查集成的框架。该集成旨在在城市社区的水平上设计藻类供电的住宅环境,其中藻类技术被视为促进城市系统内能源性能和碳减少的设计干预。该框架将设计干预与受地理背景,建设考虑和数字建筑技术影响影响的影响模拟。通过将系统边界从封闭的藻类栽培系统扩展到开放的邻邻级城市环境,城市可再生资源如能量,水,材料和碳流等于藻类栽培过程。该框架将进一步推进策划者,建筑师,工程师和建筑管理人员在住宅施工中创新闭环可持续能源系统之间共享策划者,建筑师,工程师和建筑经理之间的可能性。这种方法将解决成本,政府奖励,监管障碍或研究和发展需要的挑战,这可能会克服自动化预测,设计,建筑和设施管理流程的限制。

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