Rip Rap Calculator

Figure out how much rip rap stone your project needs. Enter the area and depth, get volume in cubic yards, weight in tons, and a cost estimate in seconds.

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Rip Rap Details
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Rip Rap Summary
Total Rip Rap: —
Surface Area
Volume (solid)
Volume (with voids)
Total Volume with Waste
Total Weight (lbs)
Total Weight (tons)
Total Weight (kg)
Estimated Total Cost
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Enter details and calculate to see breakdown.

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Faiq Ur Rahman

Founder & CEO, Techraxy

Faiq Ur Rahman is a web designer, digital product developer, and Founder of Techraxy, a growing platform of online calculators and utility tools. He specializes in building structured, user-friendly tools focused on finance, health, conversions, productivity, and everyday problem-solving. He is passionate about developing practical digital solutions that make complex tasks simpler for users worldwide.

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Introduction

Rip rap is rock armor. Contractors use it on streambanks, shorelines, drainage channels, and slopes where water or erosion will move anything smaller. Order too little and you’re short on the day the truck arrives. Order too much and you’re paying for stone that sits in a pile behind the shop for a year.

The sizing problem is the void ratio. Rip rap stones don’t pack tight like gravel. A cubic yard of rip rap holds roughly 70% stone and 30% air. If you need a 12-inch layer over a 40 ft × 8 ft area, the solid volume is 320 cubic feet, but you’ll need closer to 457 cubic feet of delivered stone to fill that layer because of the voids. That’s the difference between ordering 12 cubic yards and 17.

This calculator handles that adjustment, then multiplies through to the weight in tons so you can compare it against a supplier’s quote. Rip rap pricing is almost always per ton, not per yard, and the two don’t convert simply. Weight depends on the stone’s density. Most rip rap runs near 100 lb/ft³ solid, but limestone, granite, and basalt each sit a little differently. The density field accepts four units so you can plug in whatever your supplier specifies.

Class selection (R-1 through R-6) works by size range. R-1 is 4 to 8-inch stone for light erosion control. R-6 is 36 to 48-inch stone for heavy wave action or fast-moving water. All classes currently preset the density to 100 lb/ft³. If your supplier quotes a different density, switch to Custom and enter the value.

 

How to Use the Rip Rap Calculator

  1. Choose your currency from the dropdown at the top if you want the cost output in something other than US dollars.

  2. Enter the length and width of the area you’re covering. Pick feet, inches, yards, meters, centimeters, or millimeters.

  3. Enter the depth or thickness of the rip rap layer. Nine to 24 inches is typical for streambank work.

  4. Select a rip rap class from the dropdown. R-1 through R-6 covers the standard size ranges. Pick Custom if you want to enter your own density.

  5. Confirm the stone density. The default is 100 lb/ft³, which fits most rip rap. Switch the density unit to kg/m³, lb/yd³, or ton/yd³ if that’s what your supplier uses.

  6. Set the void ratio. Thirty percent is a reasonable default for angular rip rap. Rounded river rock packs tighter, closer to 20%.

  7. Add a waste factor. Ten percent covers spillage, uneven subgrade, and stone that walks off the truck.

  8. Enter the price per unit weight and pick the unit: per ton, per pound, or per kilogram.

  9. Add delivery cost if it’s not baked into the stone price. Choose total, per ton, or per load (assuming 20 tons per load).

  10. Add fabric or geotextile cost, either as a total or per square foot or square meter.

  11. Enter any labor cost as a lump sum.

  12. Hit Calculate. The Summary tab shows the headline numbers. The Detailed Breakdown tab lists every intermediate value.

 

How the Rip Rap Calculator Formula Works

The tool converts every dimension to feet and every density value to lb/ft³ before running the numbers.

Formula: Surface Area (ft²) = Length (ft) × Width (ft)

Formula: Solid Volume (ft³) = Length × Width × Depth (ft)

Formula: Volume with Voids (ft³) = Solid Volume ÷ (1 − Void % ÷ 100)

Formula: Volume with Waste (ft³) = Volume with Voids × (1 + Waste % ÷ 100)

Formula: Weight (lbs) = Solid Volume × (1 + Waste % ÷ 100) × Density (lb/ft³)

Formula: Weight (tons) = Weight (lbs) ÷ 2000

Formula: Rip Rap Cost = Weight (lbs) × Price per lb

Formula: Total Cost = Rip Rap Cost + Delivery + Fabric + Labor

The void adjustment runs on volume, not weight. A 30% void ratio means the delivered stone occupies 30% more space than its solid volume because of gaps between rocks. The math divides solid volume by 0.70 to get the real space the stone fills.

Weight works differently. You’re paying the supplier by weight, and that weight reflects solid stone. The void ratio doesn’t change the weight because air doesn’t weigh anything. So weight = solid volume × density, with the waste factor applied. That keeps the tonnage honest.

The three density units each convert to lb/ft³ before use. kg/m³ multiplies by 0.062428. lb/yd³ divides by 27. ton/yd³ multiplies by 2000 then divides by 27. Whatever you enter, the internal calculation runs in the same units.

Price units follow the same pattern. Per ton divides the entered price by 2000 to get per-lb. Per kg multiplies by 0.453592. Per lb is 1:1. Delivery cost supports three modes: a flat total, a per-ton rate multiplied by total tonnage, or a per-load rate that assumes 20 tons per truck.

 

Worked Example

You’re armoring a drainage channel. The area is 40 ft long and 8 ft wide. You need a 9-inch layer of R-3 rip rap. Your supplier charges $48 per ton for the stone, with delivery included. You’re adding 10% waste and using the standard 30% void ratio.

Step 1: Convert depth to feet.
9 inches ÷ 12 = 0.75 ft.

Step 2: Surface area.
40 × 8 = 320 ft².

Step 3: Solid volume.
40 × 8 × 0.75 = 240 ft³.

Step 4: Apply void ratio.
240 ÷ (1 − 0.30) = 240 ÷ 0.70 = 342.86 ft³.

Step 5: Add 10% waste.
342.86 × 1.10 = 377.14 ft³.
In cubic yards: 377.14 ÷ 27 = 13.97 yd³.

Step 6: Calculate weight.
240 × 1.10 × 100 = 26,400 lbs.
In tons: 26,400 ÷ 2000 = 13.20 tons.
In kilograms: 26,400 × 0.453592 = 11,975 kg.

Step 7: Calculate cost.
13.20 tons × $48 = $633.60.

The Summary tab shows 320 ft² of surface area, 240 ft³ solid volume, 377.14 ft³ with voids and waste (13.97 yd³), 13.20 tons of stone, and $633.60 total cost. The breakdown tab lists every intermediate step.

If you switch to R-5 (24–36 inch stone) without changing anything else, the weight stays the same because the calculator uses density, not stone size, to compute tonnage. The volume with voids also stays the same. Size class changes what the stone looks like in the field, not how much it weighs.

Frequently Asked Questions

How do I calculate how much rip rap I need?

Multiply length by width by depth to get solid volume. Divide by (1 − void ratio) to add the air gap. Multiply by your waste factor. That gives you the delivered volume in cubic feet. Divide by 27 for cubic yards. The calculator does the whole sequence in one pass.

 

What void ratio should I use for rip rap?

Thirty percent is the standard default for angular crushed rip rap. Rounded river rock packs tighter at around 20%. Well-graded stone with mixed sizes can sit near 25%. If you’re unsure, 30% is the safe assumption, it produces a slightly higher volume estimate, which is better than running short.

How many tons of rip rap are in a cubic yard?

About 1.35 tons per cubic yard at 100 lb/ft³ solid density with no void adjustment. With a 30% void ratio, the delivered yard contains roughly 0.95 tons of stone because the air takes up space. The calculator handles that adjustment, you enter the area and depth, and it returns the tonnage.

 

What size rip rap do I need?

Stone size depends on flow velocity and wave energy at the site. R-1 (4–8 inches) works for light erosion. R-3 (12–18 inches) handles most streambank work. R-5 and R-6 (24–48 inches) are for high-velocity channels and exposed shorelines. A civil engineer or your local conservation district can specify the right class for your conditions.

 

How deep should rip rap be?

At least twice the nominal stone diameter. R-3 stone (12–18 inch range) needs an 18 to 24-inch layer. R-5 stone (24–36 inches) needs 36 to 48 inches. Thinner layers let individual stones get dislodged by flow. The calculator’s depth field accepts any value, so you can match the spec your engineer provides.

 

How much does rip rap cost?

Stone alone runs $25 to $75 per ton depending on region and stone type. Delivery adds $10 to $30 per ton. Fabric, if needed, is $0.50 to $1.50 per square yard. Labor for placement varies widely but often lands between $30 and $60 per ton for machine-placed stone. The calculator has separate fields for each cost component.

 

What is the difference between rip rap classes?

Classes describe stone size range. R-1 is 4 to 8 inches, R-2 is 8 to 12, R-3 is 12 to 18, R-4 is 18 to 24, R-5 is 24 to 36, and R-6 is 36 to 48 inches. Higher classes go on sites with more energy, faster water, bigger waves, steeper slopes. Lower classes work for gentle drainage and light erosion control.

 

Do I need fabric under rip rap?

Yes for most installations. Geotextile fabric stops subgrade soil from migrating into the stone voids, which would eventually clog the drainage. Non-woven fabric is the standard. Overlap seams by at least 12 inches and extend the fabric beyond the stone footprint on all sides. Skip it only when the subgrade is already clean, stable rock.

 

Can I use this calculator for a French drain or a ditch?

Yes. Enter the trench length and width as the area, and the stone depth as the depth. The void ratio and waste fields work the same way. For a French drain, use the trench width rather than the pipe diameter. The calculator doesn’t model the pipe itself, so add pipe and filter sock cost to the Additional Costs field.

 

Is this rip rap calculator free?

Yes. No sign-up, no email, no usage limit. The calculations run entirely in your browser. Use the Copy button to save the results for a quote, or the Share button to send them to someone on the crew.

Disclaimer

This calculator provides planning estimates for rip rap volume, weight, and cost. It assumes a rectangular area with uniform depth and a uniform void ratio across the stone layer. Actual requirements depend on site conditions, stone gradation, subgrade stability, flow velocity, and local specifications. Rip rap design for streambanks, shorelines, and channels often requires engineering input and permits. Verify quantities with your supplier and, for any project involving water or slope stability, with a licensed engineer. Cost figures are material and delivery estimates only unless you enter labor and equipment separately.

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