Introducing McMurdo Station located in Antarctica by OZ Architecture

Comments OZ Architecture 02-10-2018

OZ Architecturean award-winning, global architecture and design firm, has recently unveiled the new master plan and building design for the American Antarctic base station, McMurdo Station. Selected in 2012 by Lockheed Martin’s Antarctic Support Contract (now under Leidos) and the NationalScience Foundation (NSF) to create a new masterplan, OZ has delivered a design that will significantly improve the livability,efficiency and sustainability of the entire community. The new McMurdo Station will become an icon of American leadership in science, architecture andengineering.

 

McMurdo Station from ob hill 

 

Never intended to be a permanent settlement, McMurdo Station was originally built more than 60 years ago, but today has grown into a disparate outpost of more than 100 inefficient structures over 164 acres, with no central planning. The approximate 1,000 summer workers and 250 year-round residents at McMurdo must battle the harsh Antarctic elements for simple tasks such as walking from one building to the next for a meal, visiting a science lab, or transporting goods from a warehouse. This not only leads to difficult and time-consuming conditions for the people, but also results in heat energy loss and increased carbon emissions. What’s more, the station lacks many amenities critical to the workers’ ongoing health and wellness.

 

McMurdo station lecture

 

OZ has delivered a new plan that will consolidate over 100 buildings into six, providing the community with unprecedented efficiencies.The new 300,000 squarefoot campus will emphasize a higher quality of life for its residents promote environmental stewardship, and dramatically improve logistics and energy efficiency for the important work being done at McMurdo.

 

The new McMurdo Station will function as a true community with elements including laboratories, offices, coffeehouse, a post office, gym, barbershop, store, lounges, and power and water plants. OZ specifically designed expansive spaces for residents to collaborate with stunning views of the vast landscape, and to take advantage of the natural light, which reduces the need for electrical lighting systems and generated-power. Additionally, new living quarters will provide residents with healthier surroundings and more modern accommodations. Because Antarctica can be an isolating environment, public spaces such as dining halls provide an open and relaxing atmosphere, critical for human connection and collaboration. These details help ensure residents have both access to fresh air, natural light and healthier living habits, as well as connect and strengthen the community.

 

McMurdo Station

 

For scientists and researchers, new centralized logistical support facilities improves safety and efficiency by reducing material touch-points and locating materials storage adjacent to where they are processed. The new compact foot print will reduce reliance on vehicular transportation of materials and people, and will dramatically shorten utility runs.

 

OZ has also designed the campus to significantly improve the energy efficiency of McMurdo Station. Starting with advanced, highly insulated building envelopes that increase energy efficiencyOZ also incorporated high-performance mechanical systems, improved monitoring and controls systems for better energy management, and smart Grid technology. Reusing materials onsite as well as expanding solar and wind energy sources will contribute to increased energy efficiency of the station.

 

To help with the construction of the campus, OZ Architecture designed the building components to be pre-fabricated off-site and shipped to Antarctica for assembly. This precise and sophisticated design feat ensures the building can be constructed amid an extreme environment that can reach 40 degrees below zero. Construction is expected to begin in 2019 and will take approximately five years to complete.  

 


 

Be sure to check out McMurdo stations project page on Bookmarc here 

 

 

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