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Evaluating the economic sustainability of a vertical greening system: A Cost- Benefit Analysis of a pilot project in mediterranean area

机译:评估垂直绿化系统的经济可持续性:地中海地区试点项目的成本效益分析

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The growing diffusion of vertical green systems has led to the development of new systems and technological solutions which can improve the quality of urban environments. The present research evaluates the economic sustainability of a vertical greening system (VGS) installed on an office building in Genoa (Italy) through a Cost-Benefit Analysis (CBA). The benefits deriving from the installation of VGS are compared with the costs. The economic benefits considered are related to the economic effects of energy savings (for air conditioning), with values deriving from field studies and monitoring activities, biomass production, estimated according to the material produced by annual maintenance works (pruning), and property value. The latter is estimated thanks to the involvement, by means of a specific survey, of real estate agents working in the city of Genoa. Results show that a VGS can be economically sustainable when a tax reduction on installation costs is considered; in this case, the Net Present Value and the Internal Rate of Return are positive and the Pay Back Period is lower than the life span of VGS. A relevant contribution is also determined by the energy saving for building summer conditioning due to the reduction of the external air temperature. A Monte Carlo simulation allows verifying the reliability of the results obtained for the economically sustainable scenarios. A Sensitivity Analysis on the main variables underlines the relevance of the design phase in order to optimize the choice of materials and technological solutions reducing installation and maintenance costs.
机译:垂直绿色系统的日益扩散导致了新系统和技术解决方案的开发,可以改善城市环境的质量。本研究通过成本效益分析(CBA)评估了安装在热那亚(意大利)办公楼上的垂直绿化系统(VGS)的经济可持续性。将安装VGS产生的收益与成本进行比较。所考虑的经济利益与节能(用于空调)的经济效果有关,其价值来自于实地研究和监测活动,生物质生产(根据年度维护工作产生的材料(修剪)估算)和财产价值。估计后者是由于通过一项具体调查,参与了在热那亚市工作的房地产经纪人。结果表明,如果考虑降低安装成本的税收,则VGS在经济上是可持续的;在这种情况下,净现值和内部收益率均为正,并且投资回收期低于VGS的使用寿命。由于外部气温的降低,建筑物夏季空调的节能量也决定了这一贡献。蒙特卡洛模拟可以验证在经济上可持续的情况下获得的结果的可靠性。对主要变量的敏感性分析强调了设计阶段的相关性,以便优化材料和技术解决方案的选择,从而降低安装和维护成本。

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