惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

N
Netflix TechBlog - Medium
月光博客
月光博客
Y
Y Combinator Blog
WordPress大学
WordPress大学
OSCHINA 社区最新新闻
OSCHINA 社区最新新闻
雷峰网
雷峰网
美团技术团队
T
Tailwind CSS Blog
小众软件
小众软件
量子位
Cyber Security Advisories - MS-ISAC
Cyber Security Advisories - MS-ISAC
有赞技术团队
有赞技术团队
P
Proofpoint News Feed
G
Google Developers Blog
奇客Solidot–传递最新科技情报
奇客Solidot–传递最新科技情报
Recent Announcements
Recent Announcements
The GitHub Blog
The GitHub Blog
博客园 - 三生石上(FineUI控件)
云风的 BLOG
云风的 BLOG
Vercel News
Vercel News
让小产品的独立变现更简单 - ezindie.com
让小产品的独立变现更简单 - ezindie.com
爱范儿
爱范儿
V
Visual Studio Blog
H
Hackread – Cybersecurity News, Data Breaches, AI and More

Google Research

Building AI to accelerate science and improve lives AI for everyone in every language Ask a Scientist: How can researchers use AI to spot a wildfire? A new deep learning model maps global methane emissions from space. 5 amazing visuals show how the male fruit fly’s brain map is advancing neuroscience Ask a Scientist: How do researchers use AI to predict a cyclone? Ask a Scientist: How can researchers use AI to predict a flood? Operation Blue Skies: Reducing aviation climate impact with AI AMIE, our research medical AI system, demonstrates real-time clinical video consultation capabilities in a first-of-its-kind study. Our WeatherNext 2 AI model demonstrated a massive leap forward in predicting cyclones. Understanding the AI economy How governments and organizations are leveraging Google’s AI breakthroughs for crisis resilience Three new satellites join the fight against wildfires. The latest AI news we announced in June 2026 Towards a world where no one is surprised by a natural disaster New research shows how AMIE, our medical AI, could help manage health conditions. 4 ways researchers are collaborating with Co-Scientist to solve big problems The latest AI news we announced in May 2026 A new experiment brings better group meetings to Google Beam Gemini for Science: AI experiments and tools for a new era of discovery Evolving expectations of what’s possible Quantum frontiers may be closer than they appear Building superconducting and neutral atom quantum computers Our new study explores how AI can reduce the climate impact of air travel. Broadening advanced AI education across Africa Groundsource: using AI to help communities better predict natural disasters Honoring the art of the possible this International Women’s Day How our open-source AI model SpeciesNet is helping to promote wildlife conservation The latest AI news we announced in February The quantum era is coming. Are we ready to secure it?
Our new contrail avoidance trial in Asia-Pacific
Kemal Armada · 2026-09-07 · via Google Research

Contrails are the thin, white streaks that form behind airplanes when they fly through cold, humid air. Most dissipate quickly, but some can persist and spread into cloud-like formations that contribute to warming by trapping heat in the atmosphere.

Contrails are responsible for roughly one-third of aviation’s total climate impact. And over the past few years, our efforts to reduce them have evolved from AI research models to real-world trials in the United States, across the North Atlantic, and now, in the Asia-Pacific region, the world’s fastest growing aviation market.

We’re partnering with Cathay Pacific, our first commercial airline partner in Asia to test contrail avoidance on ultra-long-haul flights 1 . Our early trials ran over 80 flights and have achieved roughly 40% estimated reduction in the warming impact of contrails by following contrail-avoidance routes. We’re now expanding the trials to provide insights across Cathay Pacific’s Asia extensive global network, helping evaluate the operational feasibility of contrail avoidance while contributing to global contrails research.

Putting predictive AI into the cockpit

What’s exciting about avoiding contrails is that it can be very straightforward in theory. Aircraft adjust their altitude slightly to steer clear of cold, humid atmospheric zones where warming contrails are likely to form, much like pilots do to navigate around turbulence. Pilots and flight teams routinely make these kinds of small, planned adjustments for a variety of operational reasons, always within established safety parameters. These adjustments are not expected to impact passengers or the safety of the flight. Adjusting flight altitudes for contrail avoidance in practice means giving flight teams actionable data long before an aircraft leaves the gate, and then feeds that data to the cockpit. Building on our previous work deploying the contrail solution in live operations, we're partnering with Cathay Pacific to expand its use into the Asia-Pacific region.

Our system brings together AI predictions, satellite imagery, and advanced weather intelligence to pinpoint these contrail-forming zones in advance, allowing dispatchers and pilots to plan slight altitude shifts around them. In the air, Cathay Pacific connects these dynamic forecasts directly to the flight deck through in-flight Wi-Fi and its proprietary Electronic Flight Folder (EFF), giving pilots live insights alongside usual operational metrics without interrupting standard cockpit workflows.

Moving from proof of concept to scalable trial

We started an operational trial with more than 100 flights targeted across Cathay Pacific's network. More than 80 flights followed contrail-avoidance routes, with Google’s satellite imagery analysis estimating that these flights reduced the warming impact of contrails by roughly 40%. The Hong Kong–Singapore corridor was among the routes tested, as flights in this airspace frequently encounter conditions conducive to persistent contrail formation. Analysis from the trial indicates that interventions on this single route account for more than 50% of the trial’s total emissions reductions.

Now, we're scaling the partnership with Cathay Pacific on a larger second phase of trial flights and partnering with Contrails.org, a nonprofit initiative dedicated to advancing the science of contrail mitigation. The trials are helping build a broader understanding of how contrail avoidance could work across different operating environments on Asia and transpacific routes, and contribute to the growing body of global contrails research.

Contrail mitigation remains one of the most immediately available, scalable, and cost-effective ways to reduce aviation’s climate footprint, and it can get started now, with today’s aircrafts and fuel. By advancing open contrails research together, we hope to accelerate progress in contrail science and unlock one of the most promising and cost-effective climate solutions available to aviation today.

Get the latest news from Google in your inbox

Sign up for our newsletters with product updates, event information, special offers, and more.

Your information will be used in accordance with Google's privacy policy. You may opt out at any time.