Plan a golf course renovation on the real ground.
Before the first conversation with an architect or a board, put numbers on the idea. Course Correct gives you a 3D model of the course as it stands today, with tools for distance, grade, cross-sections, and cut and fill.
The measuring tools
The tools work directly on the 3D model of each hole.
Distance
Point to point across the hole, as a straight 3D line or as plan distance on the level.
Slope and grade
Pick two points for the grade between them, in percent and degrees.
Cross-sections
Draw a line and get the elevation profile along it, with its length, elevation change, and average grade: across a fairway, through a bunker face, up to a green.
Cut and fill
Outline a stockpile or a grading area for cut, fill, and net volume, measured against a best-fit plane, the lowest point, or a target grade, with an approximate tonnage. For course staff.
What it is good for
Sizing a project early. How much material is in that stockpile? Roughly how much fill would raise this tee? What is the fall from the low side of the fairway to the outlet? A measured first answer changes what gets proposed.
Getting everyone onto the same picture. Send your architect or board a link to the same view, so the conversation starts from the ground and not from a description of it.
Understanding why an area fails before deciding what to rebuild. The slope and drainage layers sit on the same model as the measuring tools.
What it is not
The twin is indicative, not survey-grade. Use it to scope a project, compare options, and brief people. Design, staking, and construction quantities should come from your architect or engineer, working from a licensed survey.
Tonnage is an estimate from volume and a typical density for compacted earth. Real material varies.
The measuring tools run in a desktop browser.
From the same capture
The model you measure on is the same golf course digital twin your crew uses for issue tracking and your golfers use to tour the course. One drone capture, flown around your tee sheet, produces all of it.
It is built with drone photogrammetry. Our guide to photogrammetry and LiDAR for golf courses explains what that records and where a survey is still needed.
Questions about renovation planning.
Yes. Outline an area on the 3D model and the tool reports cut, fill, and net volume against a best-fit plane, the lowest point, or a target grade, with an approximate tonnage. Treat the result as an estimate for scoping.
They come from centimeter-scale drone elevation data and are working detail for planning. They are indicative, not survey-grade, so design and construction quantities should be checked against a licensed survey.
Yes. You can send a link that opens the same view of the hole in their browser.
Feet and yards for distance, percent and degrees for grade, cubic yards for volume, and approximate metric tonnes for tonnage.
The measuring tools run in a desktop browser.
Course staff, behind sign-in. Distance, slope, and cross-section tools are also open to golfers viewing the course.
Golf course drainage and slope mapping
Drone mapping for golf course superintendents: slope classes, 0.5 m contours, water flow paths and wet areas, drawn from elevation data of your own course.
ReadPlatformGolf course maintenance issue tracking on a 3D map
Issue tracking for golf course superintendents: pin a problem on the 3D course with a photo, priority, assignee and due date, then work it from one board.
ReadGuideDrone photogrammetry vs LiDAR for golf course mapping
What drone photogrammetry and LiDAR each measure on a golf course, where each one struggles, and which to choose for drainage, renovation and 3D course models.
ReadBook a demo.
We'll walk you through a live course twin: the staff tools, the golfer experience, and how it sits on a website. Then we map out what your course would involve. Bring your team and decide from there.
- A live twin in the browser, not a slide deck
- Issues, terrain layers, and measuring tools on a real course
- The golfer experience and the website embed