Residential complex is composed of 6 semi-detached villas on two floors with 3 bedrooms and 2+1 bathrooms. Each house has a private garden with direct access to the communal pool and parking area.
Los Olivos boasts the best finishes of Porcelanosa Group and is located on the first line of the Oliva Nova Golf Club, just 300 meters from the sea and two steps from the Oliva Nova Equestrian Center.
Foundation consists of reinforced concrete slab laid on a protective barrier of granulated polyethylene sheet.
Sanitary slabs on the ground floor are based on concrete slab of joists and vaults.
Aerial structure is based on intranslational porticos of forged beams, girders, and reinforced concrete slabs on steel pillars, with dosage, geometry and armed according to structural calculations.
BUILDING ENVELOPE FACADE
Main sheet is made of non-load-bearing 15 cm aerated concrete blocks, covered on the inside with water-repellent cement mortar.
Exterior coating with monolayer and waterproof paint and exterior ceramic cladding with rectified ceramic pieces model FOREST wood imitation Maple Oak or similar by PORCELANOSA GROUP, where it is planned according to the plans.
Interior sheet is based on self-supporting laminated plasterboard of high strength on metal profiles, incorporating mineral wool insulation inside to reinforce the thermal and acoustic behavior of the facade.
Insulation thicknesses depend on energy calculations to optimize the facade to obtain B energy classification. Minimum insulation thick- ness in facades is 50 mm.
Not passable roofs are based on multilayer system with: formation of slopes based on cell mortar of arlita; waterproofing based on an oxysulphate sheet armed with fiber glass with thermal-bounded attachment; geotextile separating layer for protection; layer of regularization of dry mortar; thermal insulation of extruded polystyrene plates of high-performance, thermal, separating layer of geotextile; termination layer using tracked layer of limestone bolus, of 50/80 mm in perfectly leveled floor.
Insulation thicknesses depend on energy calculations to optimize the roof to obtain B energy classification.
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