A floating city in the Maldives begins to take shape
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2023.01.05
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  • 1. Floating city in the Maldives
    A city is being constructed in a turquoise lagoon just 10 minutes by boat from the Maldivian capital of Male. The floating city, designed to house 20,000 people, will consist of 5,000 floating units including houses, restaurants, shops and schools, with canals running in between. The first units will be unveiled this month, with residents starting to move in early 2024, and the whole city is due to be completed by 2027. The project is a joint venture between property developer Dutch Docklands and the Government of the Maldives, and is being built as a practical solution to the threat of sea-level rise facing the Maldives, an archipelago of 1,190 low-lying islands where 80% of the land area is less than one meter above sea level.
  • 2. Floating architecture
    The floating city in the Maldives is being designed by Waterstudio, an architecture firm dedicated to building on water. Waterstudio's founder, Koen Olthuis, says that in recent years, climate change has become a 'catalyst' driving floating architecture towards the mainstream. Over the last two decades, Waterstudio has designed more than 300 floating homes, offices, schools and health care centers around the world. The Netherlands has become a center for the floating architecture movement, with projects like floating parks, a floating dairy farm, and a floating office building.
  • 3. Scaling up floating architecture
    While there has been momentum in recent years, floating architecture still has a long way to go in terms of scale and affordability, according to Patrick Verkooijen, CEO of the Global Center on Adaptation. The Maldives project aims to achieve both, constructing a city for 20,000 people in less than five years. Other plans for floating cities have been launched, such as Oceanix City in Busan, South Korea, and a series of floating islands on the Baltic Sea, but none compete with the scale and timeframe of the Maldives project.
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  • 1. Floating city in the Maldives
    Floating cities in the Maldives present an innovative and promising solution to the challenges posed by rising sea levels and climate change. These floating structures offer a unique opportunity to adapt to the changing environmental conditions and provide sustainable living spaces for the local population. By leveraging advanced engineering and renewable energy technologies, these floating cities can be designed to be self-sufficient, resilient, and environmentally friendly. They can serve as models for other coastal regions facing similar threats, demonstrating the potential of floating architecture to address the pressing issues of climate change and sea level rise. However, the development of such projects requires careful planning, community engagement, and consideration of the social, economic, and environmental impacts to ensure their long-term viability and acceptance by the local population. Ultimately, the success of floating cities in the Maldives could inspire similar initiatives in other vulnerable regions, contributing to a more sustainable and resilient future for coastal communities worldwide.
  • 2. Floating architecture
    Floating architecture is an innovative and exciting field that holds immense potential for addressing a wide range of challenges, from rising sea levels and limited land availability to the need for sustainable and adaptable living spaces. By leveraging the buoyancy of water, floating structures can be designed to be mobile, flexible, and resilient, allowing them to adapt to changing environmental conditions and provide unique living and working experiences. These floating structures can be utilized for a variety of purposes, such as residential communities, commercial hubs, research facilities, and even recreational spaces, offering a new paradigm for urban development and resource utilization. However, the successful implementation of floating architecture requires careful consideration of engineering, environmental, and social factors, as well as collaboration between various stakeholders, including architects, engineers, policymakers, and local communities. Addressing challenges related to infrastructure, energy, and resource management will be crucial in ensuring the long-term viability and sustainability of these floating structures. As the field of floating architecture continues to evolve, it holds the promise of transforming the way we live, work, and interact with our aquatic environments, contributing to a more resilient and adaptable future for humanity.
  • 3. Scaling up floating architecture
    Scaling up floating architecture presents both exciting opportunities and significant challenges. As the demand for innovative and sustainable living solutions grows, the ability to scale up floating structures can have far-reaching implications for addressing issues such as housing shortages, climate change adaptation, and resource scarcity. By leveraging economies of scale, advancements in materials, and improved construction techniques, the scaling up of floating architecture can lead to more cost-effective, efficient, and accessible floating communities and infrastructure. This could enable the deployment of floating cities, floating farms, and other large-scale floating structures in various regions around the world, providing viable alternatives to traditional land-based development. However, scaling up floating architecture also requires overcoming technical hurdles related to structural integrity, logistics, and resource management, as well as navigating complex regulatory and policy frameworks. Ensuring the long-term viability and sustainability of these scaled-up floating systems will necessitate close collaboration between engineers, urban planners, policymakers, and local communities. Additionally, the social and environmental impacts of large-scale floating architecture must be carefully considered to ensure equitable and responsible development. If these challenges can be addressed effectively, the scaling up of floating architecture has the potential to revolutionize the way we live, work, and interact with our aquatic environments, contributing to a more resilient and sustainable future for humanity.