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SMART FARM

Tech/Business Concept Structure: Smart Farm

The third-generation Korean smart farm model enables integrated control and production management of the entire smart farm process by implementing the optimization of greenhouse and efficient energy systems combined with first-generation convenience and second-generation productivity technology, as well as AI and unmanned automation systems.

> Related technology collaboration, corporate investment and sponsorship, social contribution content provision, academic research and conference holding, etc.

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Visual Concept: Baroque Painter’s Fruit

Still life and landscape replaced the place where gods and heroes disappeared from.

From the Renaissance in the 16th century, scientists began to accept the universe and nature as objects of scientific inquiry rather than spiritual phenomena. In the 17th century, this research accelerated and mysticism that covered nature was removed. Research done by scientists research was dangerous to be considered blasphemous in some European countries, but it was done freely in the Protestant Netherlands, which stimulated the curiosity of many.

Paintings depicting everyday life and still life paintings depicting fruits started to appear. Accordingly, the fruit paintings of the Baroque era are a product of scientific curiosity of natural objects, suggesting the end of the previous era through finite fruits and the beginning of a new era with the life of fruits.

> Linking with the technical/business structure concept of smart farms which are a combination of nature and science; Linking with historical similarity; Establishing clear aesthetic inspiration points; Linking art projects and programs

Main attraction

Aquaponics, Aeroponics, and Fruit Cultivation

  • A space that easily explains Aquaponics and Aeroponics.

  • A space for testing remote IoT technology and smart farm technology rather than actual cultivation and sales of fruits,

  • A space provided to reproduce technology or as a space for the lab or educational practices of children/undergraduate/graduate/postgraduates.

  • Provided to affiliate companies and educational foundations.

  • Aquaponics, Aeroponics technology Convergence utilization for future art projects. Provided as a testing site for foundations and corporations and as a to unveil new technology.

  • Increasing the recreational activities of experiences by allowing participants of the education and cultivation to actually eat the fruits.

  • Using folding glass to set the wind direction, amount of air, and sun direction through remote technology, the shape of the pavilion also changes depending on the folding method.

  • Photosynthesis through natural light and high outdoor visibility achieved using glass

  • Color: SOFT COLOR (PINK) + AQUA BLUE + WHITE

  • Glass and Fiber Optic Cable: Corning

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An angled circular space

One side is equipped with FOLDING technology and can be remotely opened or closed diagonally like window blinds. Wind speeds and the direction of the sun can be set through the angle of the degree of the opening. Through the change in the angle, the shape of the pavilion is also changed, enabling the fusion of technology and artistic expression.

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Visitors can enter inside with a manager after making a reservation in advance. The manager explains the structure and principles of the smart farm and guides the audience.

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Inside, there is a space where LECTURES can be held, thus allowing education to take place. When there are no LECTURES it becomes a free space for resting.

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A garden is placed in the middle. The garden is a space that "reproduces" the principles of aquaponics. As  garden not actually cultivated using aquaponics but reproducing its space, the bottom will have an aquarium while the top will be a garden thus explaining the principles while providing an artistic space.

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