CCY architects hides this DNA alpine cabin in the colorado rockies
CategoriesArchitecture

CCY architects hides this DNA alpine cabin in the colorado rockies

a mountain hideaway for nature-lovers

 

Deep into the rugged wilderness of Colorado‘s San Miguel County, this newly completed house known as DNA Alpine has been crafted by CCY Architects. This secluded retreat high in the Rocky Mountains offers a tranquil retreat for a family who had owned and loved the 70-acre plot of land for over two decades. Their wish for a permanent dwelling — from which they could hike, snowshoe, and cross-country ski — led to the design of this humble trio of cabins. Perched along the northern edge of a gentle bowl and backdropped by towering spruce trees, the copper-clad dwelling results from the owners’ intimate knowledge of the site. Their commitment to preserving the environment led to the structure’s minimal footprint on the land.

 

Accessible by car only in summer, occupants must reach the cabins by snowshoe in the winter months,writes CCY Architects, describing the unique remoteness of the forested site.

CCY architects hides a remote, copper-clad cabin deep in the colorado rockiesimages © Jeremy Bittermann / JBSA

 

 

ccy architects clusters a trio of cabins

 

In a thoughtful response to the hidden site’s challenging topography, CCY Architects divided DNA Alpine into three distinct buildings: the main house, garage, and sauna. This division allowed each structure to respectfully adapt to the natural contours of the land, weaving between the existing trees. These buildings are linked together by a network of walking paths.

 

To ensure space for gatherings across generations, the architects employed a clever strategy of multi-functional areas. Instead of allocating space for four dedicated bedrooms, a flexible room serves as an office or sleeping area with two daybeds, while a sleeping loft is nestled beneath the sloping roof. The outcome is a beautifully designed home that accommodates both the family and the environment it inhabits.

CCY architects hides a remote, copper-clad cabin deep in the colorado rockies

 

 

The clients wanted a generational house that respected their land, so we paid close attention to the scale of the structures,’ Consulting Principal John Cottle, FAIA tells designboom.The house lives large, with flowing spaces, but because of the folded roof the highest point is only fourteen feet above the undulating topography. It’s a statement of deference to the beauty of the landscape.’

CCY architects hides a remote, copper-clad cabin deep in the colorado rockies
the copper cladding pattern mirrors the DNA sequence of the site’s heritage spruce trees

 

 

dna alpine’s namesake copper cladding

 

For the cladding of its DNA Alpine, CCY Architects turned to copper sheeting, which was carefully formed into four profiles that could be arranged in any pattern. Inspired by the client’s interest in synthetic biology, the chosen pattern mirrors the DNA sequence of the heritage spruce trees that encircle the house. This non-repetitive sequence wraps the structure, creating a dynamic and slightly reflective facade that interacts with the changing daylight. As seasons pass, the cladding will gracefully patina, further harmonizing the house with its natural surroundings.

CCY architects hides a remote, copper-clad cabin deep in the colorado rockies
the angular, sloping roof is expressed along the interiors CCY architects hides a remote, copper-clad cabin deep in the colorado rockiesthe trio of cabins are linked by a network of footpaths

Reference

Using drones to collect environmental DNA 
CategoriesSustainable News

Using drones to collect environmental DNA 

Spotted: Living organisms leave behind genetic tracks in the environment – DNA or eDNA. Ecologists then inspect these tracks to catalogue biodiversity, uncovering which species are active in that area. However, while following some organisms is easy, others reside in hard-to-reach areas, often turning research into a cold case. To improve the data collection, researchers at the ETH Zurich and the Swiss Federal Institute for Forest, Snow, and Landscape Research WSL have developed a drone that can land on tree branches and collect samples.

The aircraft first lands on a branch to gather the sample using a sticky strip. Then, back at the lab, researchers can extract DNA from the adhesive strip and analyse it. Finally, the team will assign genetic matches of the various organisms using database comparisons. 

But all branches are different, with varying elasticity, thickness, and sturdiness and overcoming these issues proved a challenge for the team, as landing on the branches required complex control. To address this, the researchers fitted the drone with a force-sensing cage to enable it to gauge the flexibility of the branch on a case-by-case basis and incorporate this into its landing technique. 

To date, the drone has been tested on seven tree species. But now, the team has been prompted to improve the device in the hopes of winning a competition to detect as many species as possible across 100 hectares of Singaporean forest in 24 hours. 

Springwise has previously spotted other innovative drone technologies, including a drone that can inspect and repair wind turbines, and a startup that revolutionises drone control interface.

Written By: Georgia King

Reference