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Font Scripts
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48 windy.com Last Updated: 1 month

Success 62% of passed verification steps
Warning 23% of total warning
Errors 15% of total errors, require fast action

Desktop

Mobile

Performance Desktop Score 90%
Best Practices Desktop Score 100%
SEO Desktop Score 91%
PWA Desktop Score 100%
Performance Mobile Score 53%
Best Practices Mobile Score 100%
SEO Mobile Score 85%
PWA Mobile Score 100%
Page Authority Authority 64%
Domain Authority Domain Authority 84%
Moz Rank 6.4/10
Bounce Rate Rate 0%
charset Encoding
Great, language/character encoding is specified: UTF-8
Title Tag 38 Characters
WINDY: WIND MAP & WEATHER FORECAST
Meta Description 326 Characters
Weather radar, wind and waves forecast for kiters, surfers, paragliders, pilots, sailors and anyone else. Worldwide animated weather map, with easy to use layers and precise spot forecast. METAR, TAF and NOTAMs for any airport in the World. SYNOP codes from weather stations and buoys. Forecast models ECMWF, GFS, NAM and NEMS
Effective URL 21 Characters
https://www.windy.com
Excerpt Page content
Windy: Wind map & weather forecast© OpenStreetMap contributors !dFmkjwww.windy.com
Keywords Cloud Density
windy1 contributors1 openstreetmap1
Keyword Consistency Keyword density is one of the main terms in SEO
Keyword Freq Title Desc Domain H1 H2
windy 1
contributors 1
openstreetmap 1
Google Preview Your look like this in google search result
WINDY: WIND MAP & WEATHER FORECAST
https://www.windy.com
Weather radar, wind and waves forecast for kiters, surfers, paragliders, pilots, sailors and anyone else. Worldwide animated weather map, with easy to
Robots.txt File Detected
Sitemap.xml File Detected
Page Size Code & Text Ratio
Document Size: ~9 KB
Code Size: ~8.62 KB
Text Size: ~399 B Ratio: 4.33%

Social Data

Estimation Traffic and Earnings

8
Unique Visits
Daily
14
Pages Views
Daily
$0
Income
Daily
224
Unique Visits
Monthly
399
Pages Views
Monthly
$0
Income
Monthly
2,592
Unique Visits
Yearly
4,704
Pages Views
Yearly
$0
Income
Yearly

Desktop

Desktop Screenshot
Serve images in next-gen formats Potential savings of 117 KiB
Image formats like WebP and AVIF often provide better compression than PNG or JPEG, which means faster downloads and less data consumption
Initial server response time was short Root document took 40 ms
Keep the server response time for the main document short because all other requests depend on it
Reduce unused CSS Potential savings of 15 KiB
Reduce unused rules from stylesheets and defer CSS not used for above-the-fold content to decrease bytes consumed by network activity
Serve static assets with an efficient cache policy 14 resources found
A long cache lifetime can speed up repeat visits to your page
JavaScript execution time 1.0 s
Consider reducing the time spent parsing, compiling, and executing JS. You may find delivering smaller JS payloads helps with this
Avoid serving legacy JavaScript to modern browsers Potential savings of 10 KiB
Polyfills and transforms enable legacy browsers to use new JavaScript features. However, many aren't necessary for modern browsers. For your bundled JavaScript, adopt a modern script deployment strategy using module/nomodule feature detection to reduce the amount of code shipped to modern browsers, while retaining support for legacy browsers
Minimize main-thread work 2.8 s
Consider reducing the time spent parsing, compiling and executing JS. You may find delivering smaller JS payloads helps with this
First Contentful Paint 0.4 s
First Contentful Paint marks the time at which the first text or image is painted
Avoid large layout shifts 3 elements found
These DOM elements were most affected by layout shifts. Some layout shifts may not be included in the CLS metric value due to [windowing](https://web.dev/articles/cls#what_is_cls)
Eliminate render-blocking resources Potential savings of 50 ms
Resources are blocking the first paint of your page. Consider delivering critical JS/CSS inline and deferring all non-critical JS/styles
First Meaningful Paint 0.7 s
First Meaningful Paint measures when the primary content of a page is visible
Avoid large layout shifts 3 layout shifts found
These are the largest layout shifts observed on the page. Each table item represents a single layout shift, and shows the element that shifted the most. Below each item are possible root causes that led to the layout shift. Some of these layout shifts may not be included in the CLS metric value due to [windowing](https://web.dev/articles/cls#what_is_cls)
Efficiently encode images Potential savings of 68 KiB
Optimized images load faster and consume less cellular data
Network Round Trip Times 20 ms
Network round trip times (RTT) have a large impact on performance. If the RTT to an origin is high, it's an indication that servers closer to the user could improve performance
Preload Largest Contentful Paint image Potential savings of 100 ms
If the LCP element is dynamically added to the page, you should preload the image in order to improve LCP
Largest Contentful Paint element 1,140 ms
This is the largest contentful element painted within the viewport
Avoids enormous network payloads Total size was 623 KiB
Large network payloads cost users real money and are highly correlated with long load times
Largest Contentful Paint 1.1 s
Largest Contentful Paint marks the time at which the largest text or image is painted
Avoid long main-thread tasks 7 long tasks found
Lists the longest tasks on the main thread, useful for identifying worst contributors to input delay
Max Potential First Input Delay 120 ms
The maximum potential First Input Delay that your users could experience is the duration of the longest task
Cumulative Layout Shift 0.022
Cumulative Layout Shift measures the movement of visible elements within the viewport
Speed Index 1.4 s
Speed Index shows how quickly the contents of a page are visibly populated
Avoids an excessive DOM size 471 elements
A large DOM will increase memory usage, cause longer [style calculations](https://developers.google.com/web/fundamentals/performance/rendering/reduce-the-scope-and-complexity-of-style-calculations), and produce costly [layout reflows](https://developers.google.com/speed/articles/reflow)
Total Blocking Time 210 ms
Sum of all time periods between FCP and Time to Interactive, when task length exceeded 50ms, expressed in milliseconds
Avoid chaining critical requests 3 chains found
The Critical Request Chains below show you what resources are loaded with a high priority. Consider reducing the length of chains, reducing the download size of resources, or deferring the download of unnecessary resources to improve page load
Enable text compression Potential savings of 6 KiB
Text-based resources should be served with compression (gzip, deflate or brotli) to minimize total network bytes
Avoid non-composited animations 1 animated element found
Animations which are not composited can be janky and increase CLS
Time to Interactive 1.4 s
Time to Interactive is the amount of time it takes for the page to become fully interactive
Reduce unused JavaScript Potential savings of 67 KiB
Reduce unused JavaScript and defer loading scripts until they are required to decrease bytes consumed by network activity
Server Backend Latencies 90 ms
Server latencies can impact web performance. If the server latency of an origin is high, it's an indication the server is overloaded or has poor backend performance
Defer offscreen images Potential savings of 3 KiB
Consider lazy-loading offscreen and hidden images after all critical resources have finished loading to lower time to interactive

Mobile

Mobile Screenshot
Avoids an excessive DOM size 342 elements
A large DOM will increase memory usage, cause longer [style calculations](https://developers.google.com/web/fundamentals/performance/rendering/reduce-the-scope-and-complexity-of-style-calculations), and produce costly [layout reflows](https://developers.google.com/speed/articles/reflow)
Largest Contentful Paint 4.8 s
Largest Contentful Paint marks the time at which the largest text or image is painted
Network Round Trip Times 10 ms
Network round trip times (RTT) have a large impact on performance. If the RTT to an origin is high, it's an indication that servers closer to the user could improve performance
Properly size images Potential savings of 4 KiB
Serve images that are appropriately-sized to save cellular data and improve load time
Reduce JavaScript execution time 4.4 s
Consider reducing the time spent parsing, compiling, and executing JS. You may find delivering smaller JS payloads helps with this
Minimize main-thread work 7.9 s
Consider reducing the time spent parsing, compiling and executing JS. You may find delivering smaller JS payloads helps with this
Avoid large layout shifts 3 layout shifts found
These are the largest layout shifts observed on the page. Each table item represents a single layout shift, and shows the element that shifted the most. Below each item are possible root causes that led to the layout shift. Some of these layout shifts may not be included in the CLS metric value due to [windowing](https://web.dev/articles/cls#what_is_cls)
Reduce unused JavaScript Potential savings of 67 KiB
Reduce unused JavaScript and defer loading scripts until they are required to decrease bytes consumed by network activity
First Contentful Paint 1.3 s
First Contentful Paint marks the time at which the first text or image is painted
Reduce unused CSS Potential savings of 16 KiB
Reduce unused rules from stylesheets and defer CSS not used for above-the-fold content to decrease bytes consumed by network activity
Avoid chaining critical requests 3 chains found
The Critical Request Chains below show you what resources are loaded with a high priority. Consider reducing the length of chains, reducing the download size of resources, or deferring the download of unnecessary resources to improve page load
Speed Index 4.6 s
Speed Index shows how quickly the contents of a page are visibly populated
Eliminate render-blocking resources Potential savings of 260 ms
Resources are blocking the first paint of your page. Consider delivering critical JS/CSS inline and deferring all non-critical JS/styles
Enable text compression Potential savings of 6 KiB
Text-based resources should be served with compression (gzip, deflate or brotli) to minimize total network bytes
First Meaningful Paint 3.1 s
First Meaningful Paint measures when the primary content of a page is visible
Total Blocking Time 1,590 ms
Sum of all time periods between FCP and Time to Interactive, when task length exceeded 50ms, expressed in milliseconds
Avoids enormous network payloads Total size was 539 KiB
Large network payloads cost users real money and are highly correlated with long load times
Max Potential First Input Delay 570 ms
The maximum potential First Input Delay that your users could experience is the duration of the longest task
Efficiently encode images Potential savings of 22 KiB
Optimized images load faster and consume less cellular data
Serve static assets with an efficient cache policy 4 resources found
A long cache lifetime can speed up repeat visits to your page
Initial server response time was short Root document took 90 ms
Keep the server response time for the main document short because all other requests depend on it
Avoid long main-thread tasks 16 long tasks found
Lists the longest tasks on the main thread, useful for identifying worst contributors to input delay
Time to Interactive 5.3 s
Time to Interactive is the amount of time it takes for the page to become fully interactive
Largest Contentful Paint element 4,820 ms
This is the largest contentful element painted within the viewport
Cumulative Layout Shift 0.042
Cumulative Layout Shift measures the movement of visible elements within the viewport
Avoid non-composited animations 1 animated element found
Animations which are not composited can be janky and increase CLS
Server Backend Latencies 140 ms
Server latencies can impact web performance. If the server latency of an origin is high, it's an indication the server is overloaded or has poor backend performance
Preload Largest Contentful Paint image Potential savings of 780 ms
If the LCP element is dynamically added to the page, you should preload the image in order to improve LCP
Serve images in next-gen formats Potential savings of 73 KiB
Image formats like WebP and AVIF often provide better compression than PNG or JPEG, which means faster downloads and less data consumption
Document doesn't use legible font sizes 22.29% legible text
Font sizes less than 12px are too small to be legible and require mobile visitors to “pinch to zoom” in order to read. Strive to have >60% of page text ≥12px
Defer offscreen images Potential savings of 3 KiB
Consider lazy-loading offscreen and hidden images after all critical resources have finished loading to lower time to interactive
Tap targets are sized appropriately 100% appropriately sized tap targets
Interactive elements like buttons and links should be large enough (48x48px), or have enough space around them, to be easy enough to tap without overlapping onto other elements
Avoid serving legacy JavaScript to modern browsers Potential savings of 11 KiB
Polyfills and transforms enable legacy browsers to use new JavaScript features. However, many aren't necessary for modern browsers. For your bundled JavaScript, adopt a modern script deployment strategy using module/nomodule feature detection to reduce the amount of code shipped to modern browsers, while retaining support for legacy browsers
Avoid large layout shifts 3 elements found
These DOM elements were most affected by layout shifts. Some layout shifts may not be included in the CLS metric value due to [windowing](https://web.dev/articles/cls#what_is_cls)

Speed And Optimization Tips

Website speed has a huge impact on performance, affecting user experience, conversion rates and even rankings. ‪‬‬By reducing page load-times, users are less likely to get distracted and the search engines are more likely to reward you by ranking you
Title Website
Congratulations! Your title is optimized
Description Website
Warning! Your description is not optimized
Robots.txt
Congratulations! Your site have a robots.txt file
Sitemap.xml
Congratulations! We've found a sitemap file for your website
SSL Secure
Congratulations! Your site have Support to HTTPS
Headings
Warning! Your page not contain any H1 and H2 headings. H1 and H2 headings help indicate the important topics of your page to search engines
Blacklist
Congratulations! Your site is not listed in a blacklist
W3C Validator
Warning! Your site have errors W3C
Accelerated Mobile Pages (AMP)
Warning! Your site not have AMP Version
Domain Authority
Congratulations! Your Domain Authority is good
GZIP Compress
Warning! Your site not is compressed, this can make slower response for the visitors
Favicon
Congratulations! Your website appears to have a favicon.
Broken Links
Congratulations! You not have broken links View links

Alexa Rank

99,999,999

Global Rank

99,999,999

-
Traffic
Search

Domain Available

Domain (TDL) and Typo Status
windy.co Already Registered
windy.us Already Registered
windy.com Already Registered
windy.org Already Registered
windy.net Already Registered
wndy.com Already Registered
zindy.com Available
sindy.com Already Registered

Information Server

Response Header HTTP headers carry information about the client browser, the requested page and the server
HTTP/1.1 200 OK
Content-Type: text/html
Connection: keep-alive
Server: nginx/1.22.1
Date: Fri, 29 Mar 2024 22:47:18 GMT
Cache-Control: max-age=0
X-Windy-Backend: client-index
Content-Security-Policy: frame-ancestors 'self' *.windy.com:*
Via: 1.1 google, 1.1 5632fe5930775cf7bdf993a5c3c6fa2e.cloudfront.net (CloudFront)
X-Cache: Miss from cloudfront
X-Amz-Cf-Pop: YUL62-C2
X-Amz-Cf-Id: E8qGVUusMGMRDKTzOY_-W83_Sgg_0j0oBDxmULVNTTZQRNrf4aUqvA==
DNS Records DNS Resource Records associated with a hostname
View DNS Records