Contour Interval Elevation Calculator

Contour Interval Elevation Calculator

Estimate contour interval, total elevation change, target contour elevation, slope grade, and map spacing from labeled index contours or field-measured map distance.

Real map presets
Map measurements
Use the lower labeled contour if calculating uphill.
Use the next labeled index contour on the same slope.
Count spaces between labeled contours, not both label lines.
Spaces from the starting labeled contour to your point.
Measured on the paper or printed map.
Used for route grade separate from straight contour spacing.

Contour calculation results

Contour interval 40 ft 12.2 m per contour
Elevation change 120 ft 36.6 m to target
Average slope 3.9% 2.2 degrees by route
Target elevation 760 ft 231.6 m estimated contour
Formula for contour interval840 - 640 / 5 = 40 ft
Index contour checkEvery 5th contour implies 200 ft between index lines
Horizontal ground distance from map2,500 ft from 1.25 in at 1:24,000
Spacing grade across measured contours4.8% straight-line grade
Route grade formula120 ft / 3,062 ft = 3.9%
ClassificationModerate hiking grade
Map and instrument spec grid
1:24kUSGS 7.5 minute topo scale
20 ftCommon lowland contour interval
40 ftCommon mountain contour interval
5thTypical index contour frequency
1 mmUseful ruler precision on printed maps
8.3%About 440 ft gain per mile
15%+Steep sustained walking grade
3.281Feet per meter conversion factor
Reference tables
Contour intervalIndex-to-index riseBest map terrainPlanning note
5 ft / 1.5 m25 ft / 7.6 mVery flat campground, floodplain, dunesShows subtle drainage and small benches
10 ft / 3 m50 ft / 15.2 mRolling forest, low hills, parksGood for campsite and trail approach checks
20 ft / 6.1 m100 ft / 30.5 mMost USGS hiking areasBalanced detail for route planning
40 ft / 12.2 m200 ft / 61 mMountain and canyon mapsSteep terrain can hide short cliffs
80 ft / 24.4 m400 ft / 121.9 mLarge relief overview mapsUse only for broad route screening
Map scale1 inch on map1 cm on mapCommon use
1:10,000833 ft / 0.16 mi100 mOrienteering and detailed site plans
1:12,0001,000 ft / 0.19 mi120 mOrienteering and park navigation
1:24,0002,000 ft / 0.38 mi240 mUSGS 7.5 minute topo sheets
1:25,0002,083 ft / 0.39 mi250 mMetric hiking maps
1:50,0004,167 ft / 0.79 mi500 mRegional forest and expedition maps
Average gradeFeet per mileMeters per kmOutdoor meaning
0% to 5%0 to 264 ft0 to 50 mGentle walking or easy trail
5% to 10%264 to 528 ft50 to 100 mNoticeable climb with steady effort
10% to 15%528 to 792 ft100 to 150 mStrong climb, slower hiking pace
15% to 25%792 to 1,320 ft150 to 250 mSteep route, switchbacks likely
25%+1,320+ ft250+ mVery steep; check cliffs and exposure
Project or route checkTypical contour taskInputs to verifyReliable method
Camp approachEstimate climb from parking to siteRoute length, crossed contours, map scaleCalculate grade from total route distance
Ridge traverseConfirm minor saddles and high pointsIndex labels, direction, target spacesCount from nearest labeled contour
Canyon descentCheck loss before stream crossingUpper index, lower index, contour spacingUse downhill mode and map distance
Off-trail basinCompare slope lines before committingMap distance across same number of contoursSmaller spacing means steeper slope
Metric topoConvert map elevation to GPS unitsMeters, contour interval, route kmKeep the calculator in metric mode
Field tips
Count spaces between contours. If two index lines are 640 ft and 840 ft with five spaces between them, the contour interval is 40 ft, even though six lines may be visible.
Separate slope from route grade. Tight contour spacing shows the straight-line hill angle; switchbacks, trail bends, and traverses make the actual route grade gentler than the fall line.

Backcountry mishaps aren’t usually caused by getting lost in a straight line. They’re caused by underestimating difficulty of vertical travel. You see on your map a gentle-appearing ridge, and then find a series of tight contour lines that make for more ladder-climbing than hiking. Interpreting exactly what these thin brown lines mean in 3-D space can be the difference between a fun afternoon adventure and a grueling slog.

Understanding how to use a topo map isn’t so much learning a set of rules as it is turning a flat map into physical movement. You begin by locating the “contour interval,” which is the change in height between any two lines. In our example, there are five spaces between two numbered index contours, one at 640′ and one at 840′. Meaning there is a 40-foot increase per line. Everything else stems from that figure. From here, you know if you’re dealing with a gentle rise or vertical wall.

How to Read a Topo Map

The calculator above will do all the arithmetic for you when you input your own measurements. This prevents mistakes from mental math done while bracing against wind trying to read a map. Now that you know the interval, you’ll be able to guess at your position in respect to your destination. Multiply whatever number of contour spaces you’ve traversed without labels by the interval and you’re within about a hundred feet (maybe a little more) of elevation gained, which is great because it will help you pace yourself, guessing whether you’ll encounter another tree line around the next corner, if there’s a chance of water still being available in that upcoming creek.

The page’s reference tables illustrates typical situations: A forested area with a ten-foot interval reveals gradual drainage while an alpine slope with an eighty-foot one masks treacherous mini-cliffs beneath wide arcs. But here’s where things get tricky: Grade also involves horizontal distance. It doesn’t matter if you gain 100 feet vertically across one mile; that’s no sweat. But 100 feet over a quarter mile? That will punish you.

That’s why ruler measurement of map distance is important, it lets you calculate what this distance means in terms of real world ground distance. With the map scale, you can translate that paper distance into an actual distance on the ground. Then, you can compare that distance to amount of vertical gain. That gives a slope percentage that represents actual effort.

The difference between the route and straight-line grade can be confusing. For instance, a long switchbacking trail that goes up a hill will cross the same contour lines as a direct line to the top. However, the trail travels many more feet horizontally, which decreases its effective grade considerabley. Make sure to always consider the true distance along the trail, not simply the crow-flies distance, when planning your trip. You’ll notice the distinction on this tool and whether your planned route relieves some of the work, or multiplies it.

Sometimes the map reads perfectly, sometimes not so much in field conditions. Paper maps can get dusty and obscured while fog creeps over the peaks and hides them from view. In those moments, counting contour spaces become a survival skill. Play a counting game: How many contours have I just passed? Am I still descending into a drainage basin, or am I ascending out of one? Or am I moving towards a saddle? One little thing to anchor your confidence as you lose sight.

At the end of the day, however, maps are nothing more than snapshots of a moving target. Numbers comes from the calculator; the context comes from you. Take a good look at those lines, how tightly bunched together are they? The closer the lines are, the steeper they is, which means more effort. How widely spaced are they? This mean easier terrain and an opportunity to regain your strength.

When you marry solid interval math with a realistic estimation of your endurance, you transform a sheet of paper into something you can trust: a travel companion who prevents you from guessing your way through the climb and instead respects it so that ascending up to camp is every bit as enjoyable than descending back from it. You should of looked closer at those lines first.

Contour Interval Elevation Calculator

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