Alqalami Tamarah A
Department of Reconstruction and Projects, University of Baghdad, Iraq.
Heliyon. 2020 Nov 27;6(11):e05565. doi: 10.1016/j.heliyon.2020.e05565. eCollection 2020 Nov.
Buildings in Iraqi cities such as Baghdad and Mosul suffer from several problems such as the application of new materials in modern buildings that changed not just the identity of architectural heritage but also the quality of thermal comfort in façade design. This, unfortunately, adds to the damage regarding environmental sustainability and cultural values away from adaptable solutions to improve energy efficiency in building performance. One of the measures that must be taken to correctly plan in harmony with the Iraqi cities is to ensure the environmental control as part of the overall performance of building façade to maintain an active, healthy indoor environment while preserving the propriety of facade design elements, screen pattern, order and details. Therefore, there are many sustainable trends that vary in their usefulness such as biomimetics examples inspired from natural models in which form and function dictate one another. This is in order to maintain the integrated design relation between transparency, function, and elegance in the overall performance of façade elements. The research question is, how important is the choice of material in developing a sustainable element that revives environmental control while preserving the identity and values of façade design? The main goal of the research study is to identify the role of advanced technologies and the choice of smart glazing materials to revive the quality of thermal comfort in a way that not just sustains the identity of facade elements socially and culturally, but also to be responsive to the changes of climate conditions. Therefore, this research utilizes more than one technological tool such as Revit as a BIM tool with the application of smart dynamic materials such as Photovoltaics and Electrochromic in order to restore part of the design expression and enhance the building performance through its elements in contemporary façade design and its details. In this work, it can be seen that applying a set of technological tools allows to clearly illustrate the impact of smart dynamic materials to improve the quality of design and comfort while protecting the identity of contemporary façade elements when compared to static or traditional materials, aesthetically, and functionally.
伊拉克城市如巴格达和摩苏尔的建筑存在诸多问题,比如现代建筑中使用新材料,这不仅改变了建筑遗产的特性,还影响了立面设计中的热舒适度。不幸的是,这加剧了环境可持续性和文化价值方面的破坏,而缺乏能提高建筑性能能源效率的适应性解决方案。为了与伊拉克城市和谐规划,必须采取的一项措施是确保环境控制成为建筑立面整体性能的一部分,以维持活跃、健康的室内环境,同时保持立面设计元素、屏风图案、秩序和细节的恰当性。因此,有许多可持续发展趋势,其效用各不相同,例如受自然模型启发的仿生学实例,其中形式和功能相互影响。这是为了在立面元素的整体性能中保持透明度、功能和优雅之间的综合设计关系。研究问题是,在开发既能恢复环境控制又能保留立面设计特性和价值的可持续元素时,材料选择有多重要?该研究的主要目标是确定先进技术的作用以及智能玻璃材料的选择,以恢复热舒适度,不仅在社会和文化层面维持立面元素的特性,还能应对气候条件的变化。因此,本研究运用了多种技术工具,如作为建筑信息模型(BIM)工具的Revit,并应用了光伏和电致变色等智能动态材料,以便在当代立面设计及其细节中通过其元素恢复部分设计表现力并提升建筑性能。在这项工作中,可以看到,与静态或传统材料相比,应用一组技术工具能够清晰地说明智能动态材料在美学和功能上对提高设计质量和舒适度的影响,同时保护当代立面元素的特性。