The Bioclimatic Approach in Developing Smart Urban Isles for Sustainable Cities

D. Serghides, S. Dimitriou, I. Kyprianou, C. Papanicolas
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引用次数: 3

Abstract

The rapid trends of urbanization have catastrophic consequences on the ecology of our cities. The large amounts of energy consumption and the reckless exploitation of natural resources is leading to increased emissions of ozone depleting gases and carbon dioxide emissions, which are polluting our planet and enhancing the effects of global warming. This paper will present the bioclimatic approach in achieving a smart urban isle as a basic unit for the development of sustainable cities of the EU ERANET project “Smart bioclimatic low-carbon urban areas as innovative energy isles in the sustainable city” (SUI). It will outline the project and demonstrate the approach of achieving bioclimatic urban isles through the Cyprus case study. The main aim of the SUI project is to develop sustainable cities through balancing locally the energy systems. Thus, the project aspires to move forward with the urban energy and CO2 reduction. The study will focus on the bioclimatic approach, which is one of the three cornerstone procedures (Bioclimatic design, Smart Grids and Management Platform) on which the project is based. It will exemplify how the various aspects of the bioclimatic design and the utilization of the beneficial aspects of the surrounding environment are exploited and applied on defined urban isles, as a basic unit of the city.
发展可持续城市智慧城市岛的生物气候方法
快速的城市化趋势对我们城市的生态造成了灾难性的后果。大量的能源消耗和对自然资源的不顾后果的开发正在导致消耗臭氧层气体和二氧化碳排放的增加,这些气体正在污染我们的星球,并加剧全球变暖的影响。本文将介绍实现智能城市岛的生物气候方法,作为欧盟ERANET项目“智能生物气候低碳城市地区作为可持续城市中的创新能源岛”(SUI)的可持续城市发展的基本单元。它将概述该项目,并通过塞浦路斯案例研究展示实现生物气候城市岛屿的方法。SUI项目的主要目标是通过平衡当地的能源系统来发展可持续的城市。因此,该项目渴望推动城市能源和二氧化碳减排。该研究将侧重于生物气候方法,这是该项目所基于的三个基石程序(生物气候设计、智能电网和管理平台)之一。它将举例说明生物气候设计的各个方面和周围环境有益方面的利用如何被开发和应用于定义的城市岛屿,作为城市的基本单元。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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