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Green maintainability assessment of high-rise vertical greenery systems

机译:高层垂直绿色系统的绿色培养性评估

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Purpose - Vertical greenery systems (VGS) have been a widely accepted design strategy that contributes to creating sustainable built environments. However, green building technologies (e.g. VGS) have grown in complexity which poses maintainability challenges. Designing with maintainability in mind is crucial in delivering efficient and sustainable buildings. This paper aims to assist designers and allied professionals in terms of integrating maintainability and sustainable design in developing high-rise VGS directly from its design inception. Design/methodology/approach - The study is grounded on the "Green Maintainability" concept which link maintainability, sustainability and facility management right at the outset. The Green Maintainability factors are translated into critical design criteria which are used to analyze the selected instrumental case studies to evaluate the high-rise VGS performance and maintainability potential. A qualitative approach via the triangulation of data collected from relevant literatures, field surveys and walkthrough interviews is undertaken. Findings - Findings have shown that the major VGS defects which are mostly occurring in the case studies are issues concerning fallen leaves and dirt accumulation; safety issues during cleaning and repairs; insufficient maintenance access; algae/mould growth; withering plants; water stagnation/ponding; poor/faulty irrigation and water dripping and unavailability of natural elements. Best practices and lessons learned revealed few design oversight and technical issues concerning high-rise VGS façade implementation. While maintenance cost, biodiversity and lack of coordination among involved professionals are the additional issues which emerged during the stakeholders' walkthrough interviews. Originality/value - Current researches conducted on the maintainability of green building technologies (e. g. high-rise VGS) are still few. This research study is the first comprehensive assessment to determine the green maintainability potential and performance of high-rise VGS in tropical conditions.
机译:目的 - 垂直绿化系统(VGS)是广泛接受的设计策略,有助于创建可持续建筑环境。然而,绿色建筑技术(例如VGS)已经在复杂性上生长,这造成了可维护性挑战。以可维护性的设计在提供高效和可持续的建筑方面至关重要。本文旨在协助设计师和联合专业人员在直接从其设计成立中实现高层VGS开发高层VG的可持续性和可持续设计方面。设计/方法/方法 - 该研究基于“绿色可维护性”概念,该概念在一开始就将可维护性,可持续性和设施管理联系起来。绿色可维护性因素被转化为关键设计标准,用于分析所选择的仪器案例研究,以评估高层VGS性能和可维护性潜力。通过相关文献,现场调查和演练访谈所收集的数据的三角测量进行定性方法。调查结果表明,在案例研究中主要发生的主要VGS缺陷是有关落叶和污垢积累的问题;清洁和维修期间的安全问题;维护不足;藻类/霉菌生长;枯萎的植物;水停滞/池塘;自然元素的较差/缺陷灌溉和水滴和不可用。最佳实践和经验教训揭示了一些关于高层VGS外观实施的设计监督和技术问题。虽然维护成本,生物多样性和涉及的专业人员之间的协调是在利益攸关方的演练访谈中出现的额外问题。关于绿色建筑技术的可维护性(例如高层VGS)进行的最新性/值 - 目前研究仍然很少。该研究研究是第一次全面评估,以确定热带条件下高层VGS的绿色可维护性潜力和性能。

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