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Impact evaluation of green-grey infrastructure interaction on built-space integrity: An emerging perspective to urban ecosystem service

机译:绿灰色基础设施互动对建筑空间完整性的影响评估:城市生态系统服务的新兴观点

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This paper evaluates the role of urban green infrastructure (GI) in maintaining integrity of built-space. The latter is considered as a lateral ecosystem function, worth including in future assessments of integrated ecosystem services. The basic tenet is that integrated green-grey infrastructures (GGIs) would have three influences on built-spaces: (ⅰ) reduced wind withering from flow deviation; (ⅱ) reduced material corrosion/degeneration from pollution removal; and (ⅲ) act as a biophysical buffer in altering the micro-climate. A case study is presented, combining the features of computational fluid dynamics (CFD) in micro-environmental modelling with the emerging science on interactions of GGIs. The coupled seasonal dynamics of the above three effects are assessed for two building materials (limestone and steel) using the following three scenarios: (ⅰ) business as usual (BAU), (ⅱ) summer (REGEN-S), and (ⅲ) winter (REGEN-W). Apparently, integrated ecosystem service from green-grey interaction, as scoped in this paper, has strong seasonal dependence. Compared to BAU our results suggest that REGEN-S leads to slight increment in limestone recession (<10%), mainly from exacerbation in ozone damage, while large reduction in steel recession (up to 37%) is observed. The selection of vegetation species, especially their bVOC emission potential and seasonal foliage profile, appears to play a vital role in determining the impact GI has on the integrity of the neighbouring built-up environment.
机译:本文评估了城市绿色基础设施(GI)在维护建筑空间完整性方面的作用。后者被视为横向生态系统功能,值得在今后对综合生态系统服务的评估中包括在内。基本原则是,集成的绿色灰色基础设施(GGI)将对建筑空间产生三方面的影响:(ⅰ)减少因流量偏差引起的风枯; (ⅱ)减少因去除污染物而造成的材料腐蚀/退化; (ⅲ)充当改变微气候的生物物理缓冲剂。提出了一个案例研究,将微环境建模中的计算流体动力学(CFD)功能与新兴的GGI相互作用科学结合起来。使用以下三种情况评估了两种建筑材料(石灰石和钢)的上述三种影响的季节性变化:(ⅰ)照常营业(BAU),(ⅱ)夏季(REGEN-S)和(ⅲ)冬天(REGEN-W)。显然,本文研究的由绿色-灰色相互作用产生的综合生态系统服务具有强烈的季节性依赖性。与BAU相比,我们的结果表明REGEN-S导致石灰石退缩略有增加(<10%),主要是由于臭氧破坏的加剧,而观察到的钢退缩大幅度减少(最高37%)。植被种类的选择,尤其是其bVOC排放潜力和季节性叶面轮廓,似乎在确定地理标志对邻近建筑物环境完整性的影响中起着至关重要的作用。

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