Porta Nuova Varesine

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Milan Italy

Available Office Space:


Spatial Data
Office Building Category: Energy-efficient office buildings
Building Status: Exist
Office Space in Total: 51.000 m2
Available Office Space: Rented
Occupancy Rate: 100%
Type of Parking Spaces Parking Fee
Additional Info
Year of Construction: December 1, 2011
Porta Nuova Varesine is a mixed use masterplan and urban renewal project in central Milan, one of the most significant redevelopments in Italy, comprising high quality residential apartments and office accommodation, retail spaces and a cultural centre.
Located at the intersection of Via della Liberazione and Via Melchiorre Gioia.
Porta Nuova will become Milan’s main intermodal hub with 2 railway stations, 3 Metro lines, 1 underground light railway and numerous road and tram services. A close-knit network of pedestrian areas and cycle paths will allow quick and easy access to the various zones.
  • Bank
  • Cafe
  • Cashpoint (ATM)
  • Parking nearby
  • Restaurant
  • Public Parking
  • Public transport
Technical details
  • Sprinklers
  • Access control
  • Building Management System (BMS)
  • HVAC
  • Suspended ceiling
  • Air-conditioning system
  • Raised floors
  • Closed Circuit Television (CCTV)
Building provided services
  • 24-hour security
  • Reception desk
  • High-speed lifts
The LEED™ Gold for its three office buildings is indicative of its sustainable credentials in the promotion of social, economic and environmental value for its users, visitors and the City of Milan. The project will deliver innovative, Class A energy performance buildings to the Italian market. Other sustainable strategies for Varesine include the use of recyclable material, sustainable timber, natural lighting, floor-to-ceiling glazing to maximize views out, sun-shading and facades that are environmentally responsive. Water efficiency measures in residential
buildings can reduce water usage by 30% or more. Potable water usage will be reduced within the buildings through the specifi cation of low-flow fixtures and automatic sensors. The buildings’ energy consumption will be reduced through the employment of high performance servicing strategies, which include building envelope optimization, efficient HVAC system design such as heat recovery and groundwater cooling. The project aims to achieve a 14% reduction in its energy performance in comparison to a code-standard building.

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