266 sq.m. Tourist Accommodation with 10 Independent Rooms
The XENIA 266 tourist accommodation, with a surface area of 266 sq.m., is a complete small-scale complex designed for use as rental rooms or a boutique tourist accommodation. The proposal focuses on functionality, aesthetics, and a high-quality stay experience, offering an organized solution for tourist areas and small hospitality units.
With a total surface area of 265.78 sq.m., the complex is developed on two levels and includes 10 fully independent rooms. Each room has a private bathroom and the basic hospitality facilities required to operate independently and offer comfort to guests.
The layout of the spaces has been designed to ensure privacy for guests, while also supporting practical management for the owner or operator of the unit. The organization of the rooms across two levels allows better use of the available surface area and creates a complex with clear functionality and easy everyday operation.
The architecture of XENIA 266 is based on a modern Cycladic style, with white volumes, natural stone, and clean geometries. The outdoor spaces can be organized around shared relaxation areas, such as a swimming pool, seating areas, and private verandas, creating an ideal holiday environment.
Each room can be configured to offer comfortable accommodation, sufficient storage space, the possibility of a small kitchenette or coffee station, and direct access to an outdoor area. The final configuration can be adapted according to the style of the unit, the hospitality category, and the investor’s needs.
XENIA 266 is an interesting investment solution for tourist areas, as it combines efficient use of space, modern aesthetics, and functional room organization. It can be used as a design basis for rental rooms, a boutique tourist accommodation, or a small hospitality unit with a unified architectural identity.
Like all EasyGreen projects, XENIA 266 can be adapted to the plot, orientation, planning restrictions, desired capacity, and construction system. It can be implemented using the Prime, Hybrid, Energy, or Passive systems, depending on the project goal, budget, and desired level of energy performance.