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Tapered High-Rise Integrating Rainwater Harvesting and Timber Facade for Urban Parking Solutions

Authors:
정은 윤, 진희 이
Tapered High-Rise Integrating Rainwater Harvesting and Timber Facade for Urban Parking Solutions

Project in-detail

Combining a tapered silhouette with a timber facade and integrated rainwater harvesting, this high-rise structure addresses urban parking needs while enhancing the city’s ecological framework in Amman.
5 key facts about this project
01
Features a mechanical parking system that optimizes vertical space utilization.
02
Incorporates a rainwater harvesting system to support sustainable operations.
03
Tapered design enhances aesthetic appeal while maximizing functional capacity.
04
Utilizes cross-laminated timber panels for structural integrity and environmental efficiency.
05
Integrates landscaped terraces to promote urban biodiversity and community interaction.
The architectural design project focuses on a multi-functional parking platform located in Amman, Jordan. This structure addresses the growing need for organized parking amidst increased vehicular use in an urban environment facing significant transportation challenges. The project emphasizes efficient space utilization and aims to improve traffic flow while integrating seamlessly into the cityscape.

The primary function of the parking platform is to provide ample parking spaces in a vertically-oriented design. By elevating the parking facility, the design optimizes the use of land in a densely populated area. This high-rise structure not only serves functionality but also acts as a response to the urban context of Amman, where traditional horizontal parking solutions are inadequate. The inclusion of a mechanical parking system enhances accessibility, allowing for the accommodation of a large number of vehicles in a compact footprint.

Architectural Form and Integration of Nature

A notable aspect of this project is its distinctive architectural form. The design features a tapered silhouette that adds visual interest while maximizing vertical space. This approach not only allows for effective parking arrangements but also contributes to the overall aesthetics of the urban landscape.

Additionally, the project integrates elements of nature through landscaping and green features. Incorporating greenery within the design enhances the environmental quality and offers a softer contrast to the hard structural elements. These aspects contribute to better air quality and biodiversity, thus promoting ecological sustainability in an urban setting.

Innovative Water Management Solutions

Another unique element of the design is its approach to water management. In a region where water scarcity is a pressing issue, the inclusion of a rainwater harvesting system enables the collection and reuse of stormwater. This sustainable practice is essential for efficient building operation and reflects a broader commitment to environmental stewardship in architecture.

The material selection also plays a critical role in the project's functionality and sustainability. The use of reinforced concrete ensures structural stability essential for the high-rise element, while glass facades provide visibility and natural light. Timber elements are incorporated to add warmth and a tactile quality to the overall design, while metal frameworks support the building's structure and mechanical systems.

For those interested in gaining a deeper understanding of the project, it is encouraged to explore the architectural plans, sections, and detailed designs. By reviewing these components, readers can appreciate the complexities and innovative ideas that underpin this parking platform project in Amman, Jordan.
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100,000€ Prize / 2025

Design a new small-scale home concept in the 10th edition of MICROHOME — 100,000 € prize + construction

Competition organisers

The 10th edition of the MICROHOME architecture competition invites architects and designers from around the world to explore the possibilities of compact, sustainable living. Hosted by Buildner in collaboration with Kingspan and Hapi Homes, this special edition challenges participants to design an off-grid, modular microhome for a young professional couple, with a maximum floor area of 25 m². Designs should prioritize innovation, efficiency, and real-world feasibility. 

A total prize fund of 100,000 € will be awarded, including three main prizes, the Kingspan Award, and the Hapi Homes Award, which will grant 15,000 € and lead to the construction of the selected design. The final registration deadline is September 25, 2025, and winners will be announced on Decebmer 9, 2025. For full competition details and submission guidelines, visit microhome.info.

Microhome

Design a new small-scale home concept in the 10th edition of MICROHOME — 100,000 € prize + construction

100,000 € PRIZE FUND / KINGPSAN EDITION #10 IDEAS COMPETITION
Prize 100,000 € + Potential realisation
Eligibility Open to all
Early bird registration deadline 22 May 2025
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