AMANDAWOLFE

AMANDA WOLFE
Urban Climate Alchemist | Architect of Cool City Ecosystems

I engineer self-regulating urban thermal systems that transform heat islands into climate-resilient habitats—merging satellite thermal mapping with AI-powered microclimate modeling to reduce urban temperatures by 5.2°C while increasing green space accessibility by 300%.

Core Innovations

1. 4D Heat Diagnostics

  • "Thermal DNA" profiling identifying 1,800+ heat amplification factors from pavement materials to AC exhaust patterns

  • Cool Corridor Algorithms designing wind channels using computational fluid dynamics

2. Active Cooling Solutions

  • Phase-Change Pavements absorbing heat during day/releasing at night with 78% efficiency

  • Hydronic Street Furniture circulating cooled water through benches/bus stops

3. Community-Centric Mitigation

  • Heat Equity Mapping prioritizing interventions in vulnerable neighborhoods

  • Urban Forest Networks creating shade canopies with drought-resistant species

Industry Impact

  • 2025 UN-Habitat Sustainable Cities Award

  • Cooled 42 urban districts across 9 climate zones

  • Lead Scientist for C40 Cities' Urban Heat Resilience Program

"True heat mitigation doesn't just lower temperatures—it rewrites cities' thermal vocabulary."
📅 Today is Monday, April 14, 2025 (3/17 Lunar Calendar) – early heatwave alert activated for Mediterranean cities.
🌡️ [Live Thermal Dashboard] | 🌳 [Policy Toolkit] | 📈 [Case Studies]

Technical Distinctions

  • Proprietary "CoolSight" microclimate simulation platform

  • Quantum computing for material reflectance optimization

  • Blockchain-based carbon cooling credits

Available for municipal governments, property developers, and climate adaptation funds.

Specialized Solutions

  • Desert City Radiative Cooling

  • Underground Heat Harvesting

  • Space-Based Reflective Surface Planning

Need custom cooling strategies or heat equity assessments? Let's rebalance urban climates.

A black and white urban scene featuring a large amount of steam rising from a vent in the street. The background is dominated by a tall, modern building with crisscrossing structural elements. The foreground includes a crosswalk and several pedestrians, partially obscured by the steam, walking along the sidewalk.
A black and white urban scene featuring a large amount of steam rising from a vent in the street. The background is dominated by a tall, modern building with crisscrossing structural elements. The foreground includes a crosswalk and several pedestrians, partially obscured by the steam, walking along the sidewalk.
A busy urban street features a large, worn building with numerous air conditioning units and a mix of architecture styles. The street is bustling with traffic, including cars, trucks, and a cyclist on a crosswalk. Neon signs and advertisements are visible, suggesting a commercial area.
A busy urban street features a large, worn building with numerous air conditioning units and a mix of architecture styles. The street is bustling with traffic, including cars, trucks, and a cyclist on a crosswalk. Neon signs and advertisements are visible, suggesting a commercial area.
Comprehensive Monitoring

Our system analyzes heat distribution patterns to enhance urban climate resilience and improve community well-being.

AI-Powered Analysis

Utilizing GPT-4, we assess real-time temperatures for effective mitigation planning and intervention strategies.

An aerial view of an urban area featuring a grid-like pattern of streets and rooftops. The buildings are densely packed, and the red and brown rooftops create a patchwork effect. A few cars are visible on the streets, casting long shadows in the afternoon light.
An aerial view of an urban area featuring a grid-like pattern of streets and rooftops. The buildings are densely packed, and the red and brown rooftops create a patchwork effect. A few cars are visible on the streets, casting long shadows in the afternoon light.
Real-Time Assessment

GPT-4 powered temperature assessment and mitigation planning system.

Urban landscape featuring a cluster of buildings with predominantly red and white rooftops. There is greenery with a variety of trees lining the streets and a well-maintained park visible from above. A few parked cars are visible along the roadways. In the background, a city skyline with taller structures can be seen under a partly cloudy blue sky.
Urban landscape featuring a cluster of buildings with predominantly red and white rooftops. There is greenery with a variety of trees lining the streets and a well-maintained park visible from above. A few parked cars are visible along the roadways. In the background, a city skyline with taller structures can be seen under a partly cloudy blue sky.
Tall urban buildings with a mixture of modern and slightly older architectural styles. The sun casts a warm glow on the facades, highlighting balconies and numerous windows. Air conditioning units are attached to the walls, and some vegetation is visible on the rooftops.
Tall urban buildings with a mixture of modern and slightly older architectural styles. The sun casts a warm glow on the facades, highlighting balconies and numerous windows. Air conditioning units are attached to the walls, and some vegetation is visible on the rooftops.
Urban scene featuring a mix of old and modern architecture with buildings and infrastructure elements. A plume of steam or smoke rises in the background against a cloudy sky, while parts of the buildings have snow on them. A road with a bridge passes overhead.
Urban scene featuring a mix of old and modern architecture with buildings and infrastructure elements. A plume of steam or smoke rises in the background against a cloudy sky, while parts of the buildings have snow on them. A road with a bridge passes overhead.
Heat Distribution

Monitoring heat distribution patterns for effective mitigation strategies.

The comprehensive system for monitoring heat distribution has significantly improved our urban planning strategies.

The GPT-4 powered analysis system has revolutionized our approach to real-time temperature assessment and mitigation planning.