伏伊伏丁那省Balneological潜力的当代开发模式

Nataša Ćuković Ignjatović, Dušan Ignjatović
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摘要

伏伊伏丁那省由于其特殊的地质条件,拥有丰富的各种生物资源。在2018年期间,开展了广泛的多学科研究,以调查50个地点的现状,探索相关资源的质量和数量,并为发展当代balneology设施提供建议。建筑项目从适度的饮水机到复杂的开发项目和各种设施的度假村。在整个过程中,开发和定制了一系列模型单元,以满足医疗和治疗需求,同时具有环保意识、可持续和弹性的建筑。类型学和模块化方法被认为是最有效的方法,既可以在各种情况下进行有效的开发和建设,也可以促进疗养旅游,福祉和一些当地社区的复兴。特定场地的建筑设计被认为是绿色建筑的关键前提之一;然而,伏伊伏丁那平面的拓扑结构使得模块化单元的开发能够很容易地调整到特定的地点。这些单元旨在使用相同的基本结构、建筑原则和组件实现不同的功能和美学变化。此外,这种方法可以实现季节变化和设施容量的优化,允许永久的全年运行,避免不必要的运营成本,并保持良好的生态足迹。最后,通过使用优化的单元进行潜在的扩展,维护和提高建筑性能得到保障,同时在设施的整个生命周期内保持可识别和不妥协的建筑语言。从概念设计阶段开始,被动式设计特点和现场可再生能源(太阳能和地热)的使用也被考虑在内。本文系统地介绍了研究过程的范围和取得的成果,概述了选定的案例研究示例,展示了在各种条件下的应用选项。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Models for Contemporary Exploitation of Balneological Potential in Vojvodina
Due to its geological specificities, Vojvodina is abundant with various balneological resources. During 2018, an extensive multidisciplinary research was conducted in order to investigate the current condition on 50 sites, explore the quality and quantity of relevant resources and offer proposals for developing contemporary balneology facilities. The architectural programs spanned from modest drinking fountains to complex developments and resorts with variety of facilities. Throughout the process, a series of model units were developed and tailored to match the medical and thera-peutical requirements with the imperatives of environmentally conscious, sustainable and resilient architecture. Typological and modular approach was identified as the most efficient both for effective devel opment and construction in various circumstances as well as for promoting the balneology as a rediscovered potential for healthcare tourism, well-being and revival of some local communities. Site-specific architectural design is perceived as one of the key premises of green architecture; however, the topology of Vojvodina planes has enabled the development of modular units that are easily adjusted to the specific site. These units were developed aiming to achieve different functional and esthetical variations using the same basic structure, building principles and com-ponents. Furthermore, this approach enables seasonal variations and optimisations in facility’s capacity, allowing the permanent, year-round operation avoiding unnecessary operation costs and maintaining favourable ecological footprint. Finally, by using the optimised units for potential extensions, maintaining and improving of building performance is secured, while keeping recogniz-able and uncompromised architectural language throughout facility’s life span. The use of passive design features and on-site renewable energy resources (solar and geothermal) was also taken into the consideration from the conceptual design phase. The paper systematically presents the scope and achieved results of the research process with an overview of selected case study exam-ples showing the application options in various conditions.
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