Arch Calculator: Volume, Arc Length and Material Cost
An arch is a curve with volume behind it. The face looks simple until you need a number for the radius, the arc length, or the cubic yards of masonry to fill it. This arch calculator handles five arch types, from a half-round semicircle to a flat arch, and returns the arc length, radius of curvature, central angle, face area, and total volume. Enter the span, rise, and depth, and the summary updates as you type.
Five arch types are covered. Five material types are tracked for record-keeping. Prices accept per cubic yard, per cubic foot, or per cubic meter, which covers most supplier quotes. It runs in the browser, so dimensions and prices stay on your device.
How to Use the Arch Calculator
Pick your currency from the top dropdown.
Enter the arch span, which is the total width across the opening.
Add the rise, the height of the arch above its spring line.
Set the depth or thickness of the arch ring.
Type how many identical arches you’re building.
Pick an arch type: semicircular, segmental, gothic, elliptical, or flat.
Select the material for the record, then adjust the waste factor.
Enter your price per unit volume and any additional cost.
The Summary tab leads with total volume in cubic yards and cubic meters. Detailed Breakdown lists every value the math passes through.
How the Arch Calculator Formula Works
Each arch type uses a different geometry, but they all end the same way: face area times depth equals volume.
Formula: Semicircular radius = Span ÷ 2
Formula: Segmental radius = (Rise ÷ 2) + (Span² ÷ (8 × Rise))
Formula: Gothic radius = Span
Formula: Flat area = Span × Rise
Formula: Total volume = Face area × Depth × Count × (1 + Waste %)
The semicircle is the simplest case. Its radius is half the span, the central angle is 180 degrees, and the face area is a half-circle. Everything is exact.
The segmental arch is the one most builders actually want. Given a span and a rise, the formula solves for the radius that produces that curve. A shallow segmental arch over a wide doorway is the classic use case. The math behind it uses the chord and sagitta relationship, which is why the radius calculation looks different from the others.
The gothic arch uses a fixed geometry. The radius equals the span and each side sweeps through 60 degrees, creating the pointed peak. That’s the standard equilateral gothic profile. Real gothic arches vary, but this is the common construction shape.
The elliptical arch approximates the perimeter using Ramanujan’s formula, which is accurate to within a fraction of a percent for most ellipse shapes. Face area is π × half-span × rise, divided by two for the half-ellipse.
The flat arch is a rectangle with a level soffit. It’s not really curved at all, but it’s included because flat arches over doors and windows are common in masonry.
Material type affects display only. It doesn’t change the volume math. The material matters when you’re pricing, and the calculator lets you do that with the price per unit volume field.
Worked Example: A 12 ft Segmental Arch, 3 ft Rise, 1.5 ft Deep
Say you’re building a segmental arch over a 12 ft doorway. The rise is 3 ft. The arch ring is 1.5 ft thick. Waste factor is 10%. Concrete at $150 per cubic yard.
Span: 12 ft
Rise: 3 ft
Half span: 6 ft
Radius: (3 ÷ 2) + (12² ÷ (8 × 3)) = 1.5 + 6 = 7.5 ft
Half angle: asin(6 ÷ 7.5) = asin(0.8) = 0.9273 rad
Central angle: 2 × 0.9273 = 1.8546 rad, or 106.26°
Arc length: 7.5 × 1.8546 = 13.91 ft
Face area: (7.5² ÷ 2) × (1.8546 − sin(1.8546)) = 28.125 × 0.8948 = 25.17 ft²
Volume per arch: 25.17 × 1.5 = 37.76 ft³
With 10% waste: 41.53 ft³, or 1.538 yd³
Cost at $150/yd³: 1.538 × 150 = $230.70
Just over a yard and a half of concrete, and the arc length comes in at nearly 14 ft. The contractor who cuts the formwork needs that arc length number more than the volume number. It tells them how long a piece of plywood to bend.