Hissy Cooling Jacket Combines CO₂ Cartridges with Technical Apparel for Urban Heat Mitigation

Designboom · · 1 min read · Arts & Design

Read research and analysis on Hissy Cooling Jacket Combines CO₂ Cartridges with Technical Apparel for Urban Heat Mitigation published by ICANEWS, a global research journal for emerging researchers.

Key Takeaways

  • The Hissy cooling jacket pairs CO₂ cartridges with technical apparel.
  • It is designed for mitigating extreme urban heat.
  • The jacket features micro-perforations that direct airflow towards major heat-generating areas of the body.

Why This Matters

The development of specialized apparel like the Hissy cooling jacket addresses the challenges posed by extreme urban heat. Such innovations aim to enhance comfort and potentially mitigate heat-related discomfort for individuals in hot urban environments.

Overview

The 'Hissy' cooling jacket represents a design concept developed for mitigating extreme urban heat. This technical apparel integrates CO₂ cartridges within its structure, aiming to provide a cooling mechanism. The design incorporates specific features intended to manage body temperature in hot environments.

Approach

The core approach of the Hissy cooling jacket involves a combination of two primary elements: CO₂ cartridges and technical apparel. The system is designed to utilize micro-perforations strategically placed within the garment. These micro-perforations serve to direct airflow. The targeted areas for this airflow are specified as the body's major heat-generating regions. The pairing of CO₂ cartridges with the apparel suggests a mechanism for active cooling, likely through the release or expansion of CO₂ to create a localized cooling effect, though the specific mechanism of interaction between the CO₂ and airflow is not detailed beyond their combined presence.

Research Information

Institution
Designboom
Original Study
View Publication
Source
Designboom

About ICANEWS

ICANEWS is a global research journal for emerging researchers, publishing student and emerging researcher work across all fields.