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Green-energy, water-autonomous greenhouse system: an alternative-technology approach towards sustainable smart-green vertical greening in smart cities

机译:绿色能源,水独立温室系统:智慧城市中可持续智慧绿色垂直绿化的替代技术方法

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By means of “going greener”, “getting smarter” and “converging smart-green”, an innovation-driven smart city could address the steps toward more sustainability and aim toward improved human well-being. A vertical greening means a vertical triumph of greenery in a high density urban area, in some ways it displays the level of smartness and greenness in a city. Researchers have suggested the use of vertical greening in urban areas to improve sustainability of the environment. However, conventional vertical greening is in open fields, unprotected, threatened by climate disasters, lacking in better controlled climate conditions and plant response-based circumstances. In addition are always the challenges of energy saving, reduction of CO~(2) emissions, reduction in water use and in pesticide use. A greenhouse system could instead solve different facets of these problems in conventional vertical greening to achieve an optimal balance between an efficient environmental control and efficient plant use of available resources. The greenhouse solution appears to be intellectually justifiable, adaptable and innovative, and appears beneficial to a smart-green and sustainable smart city. Through the literature review and foresighted design point of view, the paper first summarizes the major concepts and trends of smart cities, vertical greening usage and new greenhouse technologies, and approaches an introduction to the relationship and development between vertical greening and greenhouse systems, and is followed by a presentation of a proposed novel prototype of a green-energy, water-autonomous greenhouse system. The sophisticated and multi disciplinary greenhouse system reveals its innovations and advantages by using water resources and solar energy in a rational way, fit for an alternative technology approach towards sustainable smart-green vertical greening in smart cities. Aimed at improving responsiveness, efficiency and performance for environmental and resource sustainability, and also aimed at improving well-being, the system is expected to be a foresight with simplicity in evolutionary vertical greening. By means of Industry Foundation Classes file format, with a true BIM model consisting of a digital prototype of the physical elements, further design of the system will allow us to simulate an ideal greenhouse type of vertical greening and understand its behavior in both the computer environment and actual on-site construction, as well as allow the building of a smart-green point cloud with BIM workflow on any network in a smart city.
机译:通过“变绿”,“变得更智能”和“融合智慧绿色”,创新驱动的智慧城市可以解决实现更多可持续性并改善人类福祉的步骤。垂直绿化是指高密度城市地区的垂直绿化胜利,从某种意义上讲,它显示了城市的智慧和绿色水平。研究人员建议在城市地区使用垂直绿化以改善环境的可持续性。但是,常规的垂直绿化是在空旷的土地上进行的,没有保护,受到气候灾害的威胁,缺乏更好的受控气候条件和基于工厂响应的环境。此外,始终存在节能,减少CO〜(2)排放,减少用水和农药使用等挑战。温室系统可以替代地解决传统垂直绿化中这些问题的不同方面,以在有效的环境控制与有效的植物对可用资源的有效利用之间实现最佳平衡。温室解决方案似乎具有合理的理智性,适应性和创新性,并似乎有益于智慧绿色和可持续发展的智慧城市。通过文献综述和有远见的设计观点,本文首先总结了智慧城市的主要概念和趋势,垂直绿化的使用和新的温室技术,并介绍了垂直绿化与温室系统之间的关系和发展,随后介绍了拟议的绿色能源,水自治温室系统的新颖原型。先进的多学科温室系统通过合理地利用水资源和太阳能来展现其创新和优势,适合在智慧城市中实现可持续智慧绿色垂直绿化的替代技术方法。该系统旨在改善环境和资源可持续性的响应能力,效率和性能,同时也旨在改善人们的福祉,该系统有望成为具有发展前景的,具有垂直垂直绿化功能的简单系统。通过Industry Foundation Classes文件格式,以及由物理元素的数字原型组成的真实BIM模型,系统的进一步设计将使我们能够模拟理想的温室类型的垂直绿化并了解其在计算机环境中的行为和实际的现场建设,并允许在智能城市的任何网络上使用BIM工作流构建智能绿点云。

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