After Snow The Case for an Alpine Public
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After Snow
The Case for an Alpine Public
Research on the future of alpine landscapes
What Happens After Snow?

After Snow seeks to understand the ski resort as a human-designed landscape on the brink of ecological and cultural collapse. This research uses design to reimagine futures for the alpine ecologies — not as privatized, extractive enclaves, but as a public terrain.

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A glimpse of the design vision
Three spatial strategies for the slope after skiing — click to see them drawn out
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Skiers pass on a small layer of artificial snow amid warmer-than-usual winter temperatures in the Alps in Leysin, Switzerland, January 4, 2023. REUTERS / Denis Balibouse
Geographies of Skiing
Geographies of Skiing
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Framing the Problem

It probably won't come as a surprise that winter is fading. In the Alps (pictured above), the snow-inundated winters that fuel a world-renowned outdoor industry are growing scarce, leaving alpine landscapes that typically accumulate six to seven feet seasonally barren. In the not-so-distant future, winter as we know it may cease to exist: the landscape conditions that materially define skiing are unraveling — melting, and being simultaneously reengineered to simulate what no longer naturally falls.

Skiing has long been romanticized as a sport synonymous with escaping to a pristine "natural" world. After Snow argues the opposite: resorts like Telluride, Colorado are highly engineered — shaped through landforming and technical infrastructure into landscapes intelligently disguised as permanent. They are not neutral ground. The commodified terrain they occupy is shaped by the very infrastructures, and corporate overtakings, that have prolonged their existence.

Telluride was selected as the primary case for the research of After Snow, breaking the issues down into three scales: Climate, the disappearing raw material; Cultural, the question of who ends up holding the mountain as climate risk mounts; and Landscape, the physical response of regraded terrain, cleared forest, and diverted water. Read together, they describe a designed landscape whose logic is failing under the mounting pressures of global climate change, precipitation loss, and temperature rise.

01
Climate

Climate change is causing measurably less snow. Zooming out, Telluride is just one node in a global network of ski resorts facing the same collapse. In the Rockies, Sierra Nevada, and Alps alike, snowfall is becoming erratic and insufficient — a recent projection shows that by 2100, nearly every major mountain region will lose measurable snowpack, and 13% of resorts will have no snow at all. Expanding into higher elevations is now a widespread mitigation tactic, chasing colder microclimates to buy time. But this vertical migration is finite. The mountain ends.

Snowpack declines over three decades
Annual peak snowpack, 1982–1986 vs. 2012–2016 — Land-Atmosphere-Ocean Interaction Group, University of Arizona
02
Cultural

Ski resorts are consolidating into corporate megaliths in response to climate change and deregulation. Mega-resort monopolies like Vail Resorts, POWDR, and Alterra now dominate the global ski market — a strategy of consolidation that protects profits from climate volatility while doubling down on snowmaking infrastructure. Resorts that experience several consecutive low-snow years are likely to be bought out by these holding companies, further concentrating the ski landscape into fewer owner hands.

Ownership of North America's ski areas — {{ ownershipLabel }}
03
Landscape

Artificial snow is changing alpine soil. In the face of climate limits, the industry has leaned into increasingly technical solutions — snowmaking, once a stopgap, is now standard. It requires an extensive network of underground pipes, pumping stations, electrical infrastructure, and storage reservoirs, plus massive water withdrawals. The snow it produces is five times denser than natural snow, slower to melt, and settles onto ecologically devoid soils. Combined with grooming machinery, it compacts soil, disrupts plant succession, and delays spring regrowth.

Natural vs. artificial snowflake — 5x denser
Compacting "On Piste"
Forest Loss 2025, San Miguel County
Mini Case — French Alps
Alpine Abandonment
An abandoned drag lift standing on a bare slope in the French Alps
A dismantled drag lift left standing above Céüze, Hautes-Alpes — closed, never removed

France is roughly a generation ahead of the American Rockies on the closure curve, which makes it the clearest available picture of what an unplanned retreat leaves on the ground. Closure is not the end of the infrastructure. When a resort stops running, the machinery stays — towers, cable, haul rope, pylon footings — and beneath it the military, industrial and forestry waste of a century: barbed wire, fencing, old equipment, slowly degrading some of the richest wild terrain in Europe.

113
abandoned ski lifts in France — 39 miles of them, nearly three-quarters inside protected areas
3,000+
abandoned structures across the French mountains, by Mountain Wilderness's count

This is the argument for designing the exit rather than defaulting into it. Terrain that will not hold snow will be given up either way; the question is whether it is dismantled and remediated, or simply switched off.

The Guardian — as the snow retreats, France's ski lifts are left standing →
Frame — physical model Filter — physical model Foil — physical model
Selected Plates
Hover over snowflakes to reveal what happens after snow
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Research
After Snow
The Case for an Alpine Public
Author
Program
MLA, Harvard GSD
Year
2025
Site
Telluride Ski Resort, CO

In the not-so-distant future, winter as we know it may cease to exist. Across alpine regions — from the Alps to the Rockies — the winter landscapes that once defined skiing are unraveling: melting, and simultaneously reengineered to simulate what no longer naturally falls.

This project positions the ski resort as a designed landscape on the brink — both culturally and ecologically. Skiing has long been romanticized as an escape to a pristine natural world. But resorts like Telluride are highly engineered, shaped through landforming and technical infrastructure to construct landscapes intentionally designed to read as culturally significant. Today's ski resorts are not neutral grounds — they are constructed, commodified terrains shaped by artificial snowmaking, leveled slopes, and corporate consolidation. Nowhere is this more visible than in Telluride, Colorado, where ski culture overlays a deeper history of mineral extraction, privatization, and Indigenous erasure.

As the industry shifts from natural to artificial snow, and from independent operations to global monopolies, After Snow reclaims the ski mountain as a site of public potential — not as a playground for the privileged, but as a zone of cultural refusal and ecological repair.

"Rather than mourn the end of skiing, After Snow asks what kinds of publics might emerge from its ruins."
01 — The Problem
Snow is disappearing.

It probably won't come as a surprise that winter is fading. In the Alps, the snow-inundated winters that fuel a world-renowned outdoor industry are growing scarce, leaving alpine landscapes that typically accumulate six to seven feet seasonally barren. Skiing is a multibillion-dollar industry across the globe, and the raw material it is built on is going away.

The loss is not evenly distributed. Some ranges are being hit harder, and faster, than others. A recent projection shows that by 2100 nearly every major mountain region will lose measurable snowpack — 13% of resorts will have no snow at all. Telluride, Colorado is located in the Southern Rockies and will face one of the most extreme losses of snowpack and winter moisture within this mountain region — exposing it to a range of environmental issues beyond fewer skiable days, like forest fires, drought, and more invasive species.

Expanding into higher elevations is now a widespread mitigation tactic, chasing colder microclimates to buy time. But this vertical migration is finite. The mountain ends.

Annual snow cover days by mountain range, 1981–2100
Annual snow cover days by mountain range, 1981–2100, across three emissions scenarios. Letters denote statistically distinct periods.
Consequence 01
Local Climate Impacts — Telluride, Colorado

For a place so tied to its winter economy, Telluride is experiencing some of the most intense measurable effects of climate change in Colorado. Snow arrives later, melts earlier, and fluctuates wildly in quality and volume. What was once a four-month season is now compressed, unpredictable, and often reliant on artificial coverage — average skiable days have declined by nearly 20% over the past three decades.

The satellite record makes the loss legible. Each pair below is the same calendar window, five years apart, over the resort's permit boundary.

Click to compare the same months between 2018 and 2023
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Telluride Ski Resort permit boundary, outlined. Satellite imagery, same season five years apart.
Consequence 02
Fabricating Winter

Snowmaking, once considered a stopgap, is now standard. It requires an extensive network of underground pipes, pumping stations, electrical infrastructure, and storage reservoirs — not to mention massive water withdrawals from a basin already running short.

Its impact on alpine ecology is silent. Artificial snow is five times denser than natural snow. Its weight compacts the soil beneath it and it melts far later into the spring, shifting soil chemistry and stalling alpine plant succession. And because snowcats have to reach and groom that snow, the terrain below is cleared and regraded flat — compounding the compaction with a permanent change to the ground itself.

The machinery is older than the crisis it now props up. The first commercial snowmaking machine was built in 1950 by three engineers — Art Hunt, Dave Richey, and Wayne Pierce — who rigged a paint-spray compressor, a nozzle, and a garden hose into a snow cannon, blowing water droplets into freezing air. The principle came from Canadian researcher Ray Ringer, who had accidentally made snow crystals in the early 1940s while studying rime ice on jet engines. The Hunt-Richey-Pierce design was patented in 1954 and first used commercially at Grossinger's Catskill Resort in 1952; by the 1980 Lake Placid Games, an Olympics ran on manufactured snow for the first time. The lance towers standing on Telluride's runs today descend directly from that cannon.

US 2,676,471 · US 5,810,251
Method for Making and Distributing Snow · Snowmaking Lance and Tower
Wayne M. Pierce, Jr., granted Apr 27, 1954  ·  granted Sep 22, 1998
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9 sheets — scroll →
Consequence 03
Consolidation

A small independent operator cannot survive several back-to-back seasons of terrible snowpack. So they fold into a larger corporate portfolio — one that can spread its gains, and its losses, across a geographically and climatically diverse set of mountains. Mega-resort monopolies like Vail Resorts, POWDR, and Alterra now dominate the global market; nearly 40% of North America's ski areas have been bought out, largely within the last ten years.

The corporatization of skiing has made the sport financially inaccessible, exploded real-estate speculation in small isolated ski towns like Telluride, and fueled the mass expansion of artificial snowmaking. Telluride is on the list of resorts predicted to be acquired next: a few consecutive bad snow years could resituate it from its current individual-owner model to just another asset in a corporate skiing portfolio.

Click a category to see which resorts each company controls
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Territories of Skiing — 480 U.S. and 293 Canadian ski areas by ownership, ending in projected spring snowpack change
The provocation
Could a community buy back its own mountain?
The Colorado Sun · Jan. 14, 2026 · Jason Blevins
Telluride and Mountain Village leaders pitch a $127.5 million, investor-backed offer for 51% of the ski area

In the last week of December 2025, Telluride's mayor pro-tem Meehan Fee and Mountain Village mayor Marti Prohaska flew to California and offered owner Chuck Horning $127.5 million for 51% of Telluride Ski and Golf, backed by community-focused investors — roughly thirteen times the resort's estimated annual earnings, against a mountain he bought in 2005 for about $45 million. The deal looked live until the draft contract surfaced publicly and the ski company shut it down.

"The ski area is not for sale."
Telluride Ski & Golf, quoted in The Colorado Sun
Read the article at The Colorado Sun →

Telluride's ski area is a private business operating on a largely public mountain. The terrain is National Forest, held under a federal Special Use Permit that runs to February 2044. The snow is made partly with the town of Telluride's water and the rest with Mountain Village's. The lift that reaches it was built with public money. The people who run it live in the valley. Everything about the mountain is already collective except the decision-making.

The last two winters made the cost of that arrangement legible: a resort closed at Christmas over patrol wages, a snowmaking dispute settled by threatening not to make snow, an owner who did not show up to his own council update. Every one of those is a governance failure, not a snow problem — and none of them are fixable by a community that has no seat at the table.

Public and community ownership is not hypothetical here — it has already been drafted. Ski areas already operate as municipal departments, nonprofits, and cooperatives across North America, and a number of that size sits within reach of the same public financing tools towns routinely use for water systems, transit, and land. Acquisition would let the valley do what no private owner has an incentive to do: stop leaning on continuous real-estate development to prop up a profit model that a shortening winter has already destabilized, and manage the mountain for the two centuries after skiing rather than the next transaction.

A community buyout of the mountain is the premise the Foil design strategy is drawn against — see Design Strategy
02 — The Case Town
Telluride, Colorado

Telluride is nestled in a high-altitude box canyon in the southwest corner of the state. With just 2,700 permanent residents, its dramatic setting and global destination status often obscure its layered history of mineral extraction. Once a fertile hunting ground stewarded by the Navajo and Ute tribes, it was colonized in 1875 in the name of gold.

Even its very name — derived from tellurium, a metalloid found attached to gold — signals that Telluride was built on speculative value. And when the mines finally closed in the 1960s due to failing markets and supply, snow became the new gold.

Miners turned venture capitalists converted ranch and Forest Service land into navigable terrain, initiating Telluride's transformation into a winter destination. While it was not originally designed for the ultra-wealthy, the unchecked expansion of real estate — now the primary profit model for most ski resorts — slowly reshaped the town into the exclusive and often unlivable enclave it is today.

Telluride's transformation from dirt streets to designer stores was only possible by the boom and doom of the land practices that came before. Though the resort operates largely on public land under a 40-year Special Use Permit from the U.S. Forest Service, issued in 2004 and set to expire in 2044, its day-to-day experience is defined by intense privatization — a landscape governed by technical systems rather than ecological processes, where ownership and extraction are prioritized over care and repair.

Elevation
8,750 – 13,150 ft
Town 8,754 ft · ski base 8,725 ft · lift-served summit 12,570 ft (Gold Hill) · hike-to Palmyra Peak 13,150 ft — 4,425 ft vertical
Permanent residents
2,607
Town, 2020 census; ~1,400 more in Mountain Village — roughly 4,000 year-round in greater Telluride
Colonized
1875
Telluride Ski Resort opened
1972
Public land lease
40 years, expires 2044
USFS Special Use Permit, issued Feb 2004
Annual skier visits
~445,000
Average per year, 2006–2016
Skiable days
~145 / season
Est. cost per ski day
~$275 / lift ticket
Average annual snowfall
280 in / 130 in
Mountain averages ~280 in (resort markets 280–300+ at mid-mountain); the town, down in the valley, ~130 in
Current pass partnership
Vail Resorts
Epic Pass — 7 days
Extraction to recreation — a section through Telluride's timeline
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Telluride timeline — population, production, and resort expansion drawn in section
1800 to 2100 — population above the line, extraction below.
Map
Historical Layers
Select a layer to bring it into the frame — mines, water, power, terrain
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Telluride historical layers basemap Telluride base drawing — San Miguel basin
Archive
On the table
Claims maps, mine photographs, snowmaking clippings — oldest at the top, newest at the bottom; drag to sift through the pile, click to enlarge
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Film
Moving Historical Section
Telluride Ski Resort
▶ Watch on YouTube
Design Strategy
/
The Site
See Forever

See Forever is the spine of the resort — the ridge run that carries skiers from the gondola at the top of Lift 7 down through Lifts 9, 6, 14 and 15 to the valley floor. It is also the resort's most heavily engineered ground: the trail sits inside a braid of snowmaking mains, hydrants and grooming corridors, drawn here against the terraced cuts and fills that hold them.

The three strategies that follow — Frame, Filter, Foil — are tested along this line.

Site plan below See Forever — densified village core, new base, seed dispersal, re-grade run, access points and trails
Site plan below See Forever — densified village core and new base to the west, re-graded run and seed dispersal along the corridor, directed access points and trails to the east
Context map of the See Forever trail with lifts 7, 9, 6, 14 and 15 and the graded slope terraces
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See Forever in context — gondola (G) and Lifts 7, 9, 6, 14, 15 along the graded slope. Hover a marked point to see the run there.
Solar Study
Solar study of the resort — dark areas mark the highest solar exposure Lift and run overlay
Solar study — darker tones indicate high solar zones; white is shaded ground that holds snow longest. Lifts and runs overlaid in bright magenta.
Mechanized Movement
Section through the groomed piste — fan gun, groomer, artificial snow over compacted grade and the buried air, electric and water lines
Section through the run — natural snowpack meets artificial snow, compacted soils and the buried air, electric and water lines that make it
Names, Runs, Lifts
Resort diagram
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Ownership
Public land ownership overlay on the Telluride Ski Resort
The chaotic boundary between public ground and private claim
Click any study to enlarge
{{ figCaption }} Lift and run overlay
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Artifact
After Snow Field Guide
A foldable, pocket sized "ski map", 5.5 × 4.25"
Drawings
Design Framework
Through three spatial strategies, After Snow reimagines the alpine slope.
Click each to expand.
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The full drawing pans slowly top to bottom — drag or scroll inside it to move through it yourself
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Public land ownership overlay on the Telluride Ski Resort
Public land ownership overlay on the Telluride Ski Resort — the chaotic boundary between public ground and private claim
Detail
Ecology and landforming
Five call-outs from the slope — click through how the grade is remade and how growth takes hold in it
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Models
Three Conditions, One Slope
Three 1:500 chunks of See Forever, modeled in serial sections of corrugated cardboard over a 3D printed surface that carries the landforming within the run boundaries. The upper model sits at the top of Lift 9; the middle where See Forever and Lookout meet; the lower at the top of the Gondola and Lift 7.
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Advocacy
Public talks, panels, and community engagement around alpine futures.
Interested in hosting a community conversation? Get in touch →
Public Talk & Panel
After Snow: The Case for an Alpine Public
September 15, 2025 · 5:30–7pm · Wilkinson Public Library, Telluride, CO

A presentation on the future of skiing followed by a panel on "the cost of doing nothing," featuring local recreation stakeholders and EcoAction Partners on our current climate.

Recording
Community Presentation
Telluride, Colorado, September 2025
Watch on YouTube ↗
Cases
Comparative case studies in alpine resilience.
North American ski areas (faded) with the cases marked — click a case to jump to it below

Thanks to the Peter Walker & Partners Fellowship, this research is continuing beyond After Snow. The fellowship is funding a set of comparative cases alongside Telluride, Colorado — strengthening the argument that alpine landscapes are shifting quietly and unevenly across the globe, and surfacing what communities in each place are doing to slow that retreat.

Case Study
Militarized Ski Zones
Arctic Valley, Alaska
Arctic Valley Ski Area, outside Anchorage, Alaska — photo by Cory Page, May 2026

Alaska's alpine terrain sits inside a different ownership logic than Telluride's private resort model: vast tracts of ski-adjacent land remain under military jurisdiction, layered with Indigenous claims and federal land management. Where After Snow argues for prying open a privatized mountain into public commons, Alaska's militarized zones raise the inverse question — what happens when access is foreclosed not by capital, but by defense infrastructure? The case traces how national security designations restrict recreation, complicate stewardship, and produce their own version of an inaccessible alpine landscape.

Case Study
Snow Blanketing
Sun Peaks, British Columbia
© Sam Loxton, Sun Peaks, BC, Canada / Snow Secure

Across the Alps, resorts and glacier operators now blanket snowfields in reflective geotextiles each summer, slowing melt to protect both glacier ice and the artificial snow base beneath it. Unlike Telluride's snowmaking infrastructure, which manufactures winter after the fact, blanketing tries to preserve what's already there — a more literal, physical act of stewardship, but one still built on continuous capital investment rather than systemic change. As this practice expands to North America, it offers a instructive counterpoint to After Snow's proposed strategies: can conservation-by-preservation coexist with, or does it forestall, the deeper redesign the thesis calls for?

Case Study
Snowguns as Fire Mitigators
Steamboat Springs, Colorado
Photo by Steamboat Radio, Jul 2026

At Steamboat and elsewhere, resorts have begun running snowguns outside of ski season to lay down protective moisture ahead of wildfire fronts — repurposing the same machines critiqued in After Snow as an artifact of dissonant adaptation. This case examines the logic in reverse: instead of retooling snowmaking for ecological repair, resorts are retooling it for asset protection. It's a useful test of the thesis's core claim — that snowmaking infrastructure, once built, can be redirected toward public or ecological ends rather than purely private ones.

Case Study
Snow Farming
Davos, Switzerland
Flüela Pass road, Davos — the stored mound uncovered in autumn, its sawdust insulation scraped back to the ice core

What began as an experiment more than fifteen years ago is now routine: Davos stores a mound of snow through the summer on the Flüela Pass road and reopens a four-kilometer cross-country trail by the end of October, weeks before winter arrives. It is the clearest working example of treating snow as a stored resource rather than a seasonal delivery — a reservoir, managed like water.

Passive drift harvesting

Snow fences on wind-exposed ridges decelerate winter storms, forcing blowing snow to deposit into concentrated drifts — "whales" — that groomers then reposition. No energy, no water withdrawal; the wind does the work.

Active ice-core storing

Automated guns run only during peak cold, when water-to-snow conversion is most efficient, building dense artificial piles. The crystals are far denser than natural flakes, and the lower surface-area-to-volume ratio resists melting.

Preservation layers

At twenty to thirty feet, the mound is sealed. The traditional method is a twelve-inch layer of wood chips or sawdust — cheap, excellent thermal insulation.

Geotextile blankets

Premium operations use multi-layered technical fabric: a reflective white outer face bouncing solar radiation, a porous inner core letting evaporating moisture escape while keeping warm summer rain out of the pack.

For After Snow, snow farming is the most honest version of mitigation on offer: it accepts scarcity and manages a shrinking resource deliberately, rather than manufacturing an unlimited supply on demand. It also concedes the argument — a season that has to be stored over the summer is no longer a climate, it is an inventory.

Resources
Readings, data, and news coverage on alpine climate futures.
News
Scroll sideways through the coverage — click any card to read the article
Books
Click a spine to find out more — sixteen titles
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Papers
Snowpack decline and mountain hydrology — research paper (PDF) → Climate change and the ski industry — research paper (PDF) → Open Discussion: Artificial Snow (PDF) → Environmental History: The History of Tourism in the Mountains and the Construction of New Knowledge — French-Italian Alps → The Architectural Review — Alps in Flux → The Architectural Review — Letter from the Editor, AR May 2026: Alps → Nature Climate Change — Climate change exacerbates snow-water-energy challenges for European ski tourism → Climate change exacerbates snow-water-energy challenges for European ski tourism — full paper (PDF) →
Industry Data
National Ski Areas Association — Industry Statistics: skier visits, season length, operating resorts → National Ski Areas Association — Who Owns Which Mountain Resorts: the consolidation map →
Contact
Cory Page — Lead Designer, Polistudio. 2025 Peter Walker & Partners Fellow, Harvard GSD.
After Snow — Winner, Thesis Prize in Landscape Architecture, Harvard GSD, 2025 →
crpage@me.com cory@polistudio.mx LinkedIn — /in/coryrpage
About

Cory Page holds a dual master's degree in landscape architecture and urban planning from the Harvard Graduate School of Design (GSD). His work examines shifting landscapes shaped by climate volatility, material flows, and evolving cultural practices — using snow as an entry point into broader questions of environmental instability, resource management, and design's role in adaptation.

As the 2025 Peter Walker & Partners Fellow at the GSD, Cory's research builds on his thesis, After Snow, which reimagines the ski resort as a public terrain for ecological and spatial remediation. Set in his hometown of Telluride, Colorado, the work extends toward comparative research in the Alps, Andes, and arid urban regions of Mexico.

Cory is a Lead Designer at Polistudio, an interdisciplinary planning and design practice in Mexico City focused on adaptive reuse and urban regeneration.

MLA + MUP, Harvard GSD — 2025 · 2025 Peter Walker & Partners Fellow
Curriculum Vitae
Full CV as a PDF — or expand a section below to read it here
Download CV (PDF) ↓
Education {{ cvI0 }}
Master of Landscape Architecture + Master of Urban Planning, Harvard GSD — graduated with distinction
May 2025
B.A. Environmental Policy, Studio Art Minor, Colorado College — Dean's List 2018
May 2018
The University of Virginia, School of Architecture — Dean's List
2014–2015
Awards {{ cvI1 }}
Harvard GSD Landscape Architecture Thesis Prize — for After Snow: The Case for an Alpine Public
May 2025
Peter Walker & Partners Fellowship Prize in Landscape Architecture — $15,000 grant
May 2025
Landscape Architecture Foundation, 2024 Olmsted Scholar — GSD nominee
2024
MassRecycle, 2024 Award for Food-Waste Reduction + Diversion in Massachusetts
Fall 2024
Center for Geographic Analysis, Fisher Prize co-Winner — "Energy Enclaves," FRAGMENTATION mapping transect
May 2024
GSD Alumni Council & Frances Loeb Library, Unsung Hero Book Prize Recipient
Spring 2023
Colorado College, Distinguished Academic Service Award, Environmental Program
May 2018
Grants {{ cvI2 }}
Harvard CMES, Tunisia Winter Study Program — $3,500
Jan 2025
GSD Racial Equity and Anti-Racism Fund — $1,000, for "FRAGMENTATION" exhibition and roundtable
Spring 2024
Harvard Office for Sustainability, Living Laboratory Grant — $2,800 + $3,600
Spring 2024 + 2025
Work Experience {{ cvI3 }}
Polistudio, Lead Designer
Aug 2025 – Present
Leads landscape architecture, urban design, and adaptive reuse projects — recently the master plan for La Colmena in Saltillo and the landscape strategy and expansion of Reserva Peñitas in Valle de Bravo, focused on regenerative landscapes and resilient urban environments.
Harvard GSD, Zero Waste Project Founder + Sustainability Lead
Jan 2022 – Aug 2025
Founded the GSD Zero Waste Project, replacing individual bins with communal sorting zones — reducing landfill-bound waste from over 95% to 50% in its first year while composting rose 135%.
Reed Hilderbrand, Climate Action Plan Lead
Dec 2024 – Aug 2025
Supported the firm's ASLA Climate Action Plan commitment via a firm-wide GHG footprint and embodied-impact audits.
Harvard GSD Dept. of Landscape Architecture, Teaching Assistant
Jan – Fall 2024
TA for Core IV and III studios: Near-Future City / From Offshoring to Near Shore.
Reed Hilderbrand, Summer Internship
Summer 2024
Design development, presentations, and visualizations for an arboretum master plan, event spaces, and marketing initiatives.
SWA, Summer Student Program Intern
Summer 2023
Researched future landscape strategies for the Port of Los Angeles, plus an internship at SWA Balsley.
The Sanitation Foundation, Zero Waste Partnerships
Summer 2022
Worked in the NYC Dept. of Sanitation Commissioner's Office advancing zero waste goals and partnerships.
ReCompany, Strategic Sustainability Advisor
Summer 2022
Advised on the SwapBox, a reusable container designed to eliminate restaurant take-out waste.
South Pole, Climate Strategies Consultant
Jul 2019 – Jul 2021
Led carbon accounting and zero waste advisory; co-developed the first internationally-recognized plastic footprinting standard.
The Walt Disney Company, Undergraduate Associate, Environmental Sustainability
Jun 2018 – Jul 2019
Managed Disney's global Natural Climate Solutions portfolio with non-profit partners on reforestation and conservation.
Research {{ cvI4 }}
After Snow — continuing research, funded by the Peter Walker & Partners Fellowship
2025 – Present
Comparative alpine cases alongside Telluride, tracing how mountain landscapes are shifting unevenly across the globe and what communities are doing to slow that retreat.
Salata Institute for Climate + Sustainability / Office for Urbanization, Researcher
Fall 2024 – Spring 2025
Research assistant for "A Performance Evaluation Methodology For Nature-Based Adaptation Solutions" in coastal climate adaptation.
Harvard GSD, Research, Mapping, & Narrative Exchange, Researcher
May 2023 – May 2024
Established RMNE to share MLA studio projects on the Rumney Marsh with community advocates.
Community Engagement {{ cvI5 }}
Harvard GSD, Student Affairs Programs Coordinator
Aug 2022 – Present
Harvard GSD Student Forum, President
2023 – Spring 2024
Harvard University Climate Leaders Program, Cohort Member
2022–2023
Prospect Park Alliance, Volunteer
May 2020 – Jul 2021
Young Storytellers, Student Mentor
Jun 2018 – Jun 2019
Teaching & Reviews {{ cvI6 }}
Design Critic, WashU Sam Fox School of Design — Xochimilco Summer Studio, CDMX
2026
Guest Reviewer, Design Discovery, Harvard GSD
2025
Exhibits & Publications {{ cvI7 }}
After Snow: The Case for an Alpine Public — Thesis Publication
May 2025
Reimagines the ski resort as public terrain for ecological and spatial remediation, using Telluride to critique skiing's reliance on artificial snow and engineered permanence.
FRAGMENTATION: Design and Counter-design in Palestine
May 2024
Co-founded the Fragmentation Collective to examine design's role in sociospatial violence through dialogues and a 20-foot cartographic exhibition of Israel and Palestine. Published in materia arquitectura and the Harvard Urban Review.
Implementing Technology Towards Active Public Space — Algaudí Tile
Fall 2017
Designed the interactive Algaudí Tile for activating public space and sequestering CO2 via microalgae. Published by IAAC and the Creative Europe Program of the EU.
Skills & Certifications {{ cvI8 }}
Adobe Illustrator, Photoshop & InDesign · ArcGIS · AutoCAD / Rhino · Microsoft Office / Excel · Fabrication Design / CNC Milling · GHG Emissions Accounting & LCAs · TRUE Zero Waste Advisor · Spanish: Intermediate
© 2026 Cory Page. After Snow: The Case for an Alpine Public Get in touch →