构建综合植被系统及其可持续性文献综述

K.G.N.H. Weerasinghe, G. K. P. John, H. T. Rupasinghe, R. U. Halwatura
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摘要

摘要:世界各国对建筑可持续发展的需求日益增长。它的目的是减少由于城市化和人口增长不断升级对环境的不利影响。由于建筑结构被认为是主要关注的问题之一,因此优先考虑减轻对环境的负面影响。因此,将可持续的元素和技术融入到建筑中,以弥补城市建设活动造成的土地流失,是目前的实践。通过不同的方式添加不同的植被类型,以获得建筑周围更好的居住条件的预期结果,被称为建筑综合植被系统(BIV)。垂直园艺系统、垂直农场、建造绿色屋顶和屋顶农场可以被称为BIV系统的主要类别。然而,关于此类系统的发表的批判性评论很少,因此,本研究试图审查BIV系统的整体可持续性方面,包括环境可持续性、经济可持续性和社会可持续性。本研究包括对114篇相关期刊和在线科学数据库的研究出版物进行批判性审查。最后,对每个BIV系统的可持续性方面进行了分析,以选择绿化建筑的最佳选择,并建议在未来实施。最后,主要讨论了通过BIV实现可持续解决方案以满足粮食需求的重要性。最后,可以得出结论,通过将绿色建筑与智慧农业相结合,我们可以期待绿色,健康和富有成效的城市,满足可持续城市的主要要求。虽然有许多挑战需要克服,但保持良好的管理做法将带来更好的产出。在本研究选取的114篇文献中,只有8篇研究论文讨论了BIV系统的缺点和局限性,并且仍然缺乏相关信息。关键词:建筑综合植被系统,经济可持续性,环境可持续性,社会可持续性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Building Integrated Vegetation Systems and their Sustainability Aspects; A Literature Review
Abstract:There is a growing need of sustainable building development all over the world. It aims to decrease the adverse effects to the environment due to urbanization and escalating population growth. Since the building construction is considered as one of the main concerns, the priority was given to mitigate the negative impact to the environment. Therefore, incorporating sustainable elements and techniques to the buildings to regain the land loss due to construction activities in cities is currently practicing. Adding various vegetation types through different approaches, to obtain the expected results of better living condition around the building is called as building integrated vegetation systems (BIV). Vertical gardening systems, vertical farms, constructed green roofs and roof farms can be stated as main categories of BIV systems. However, there is a paucity of published critical reviews on such systems and therefore, this study is an attempt to review the overall sustainability aspects of BIV systems including environmental sustainability, economic sustainability and social sustainability. This study consists with a critical review of 114 research publications from relevant journals and online scientific databases. Finally, the identified sustainability aspects of each BIV systems were analyzed to select the best option in terms of greening a building which can be recommended for the implementations in future. Mainly, the importance of moving towards the sustainable solution which meets the food needs through BIV is finally discussed. Finally, it can be concluded that by incorporating green architecture with smart agriculture, we can expect green, healthy and productive cities which fulfill the main requirements of sustainable cities. Though there are many challenges to overcome, maintaining good management practices will give better output. Out of the 114 literature selected for this study, only 8 research papers were discussed about the drawbacks and the limitations of the BIV systems which is still having paucity of information. Keywords: Building Integrated Vegetation systems, Economic Sustainability, Environmental Sustainability, Social Sustainability
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