TryBuildCalc

Loose-Fill Insulation Calculator (Fiberglass & Cellulose Bags, Top-Up & Cost)

Estimate loose-fill bags, top-up, and cost from real coverage charts.

Inputs

Section 1: Area & Material

Multiple Areas (attic + floor combined)?

Only cellulose has a published dense-pack floor coverage chart — fiberglass isn't rated for closed-cavity application.

Existing Insulation Present?

ℹ️Set to more than 1 if several identical areas share this same size.

Section 2: Wastage

ℹ️Use 5-10% for a simple, open attic/floor and 10-15% for a complex roof, many obstructions, or a harder-to-reach cavity.

Section 3: Cost

Enable Cost Estimation?

Buy at least 36 bag(s)

Covering 500.0 sq ft of floor.

Bag Summary

Weight Needed (before wastage): 800 lb

Wastage Added: 10%

Final Weight (incl. wastage): 880 lb

Bags to Buy (all materials): 36 bag(s)

Coverage & Depth

Total Area: 500.0 sq ft (46.5 m²)

Target Thickness: 5.5 in

Bags Needed by Material

MaterialAreaWeight Needed (incl. wastage)Bag SizeBags to Buy
Cellulose Loose-Fill500.0 sq ft880 lb25.0 lb/bag36 bag(s)

Quick Insight

The real manufacturer coverage chart was used to find the weight of material needed, then 10% wastage was added on top — that's 80 lb extra beyond what the chart alone requires.

Calculated from the additional weight of material needed to reach your target R-value (accounting for any existing insulation), with 10% wastage added on top.

Bill of Materials

Main material: 36 bag(s) + recommended tools

+

Computed items reflect your entered dimensions and material choice; consumables below are general recommendations — actual needs vary by product and site.

For Your Job

Cellulose Loose-Fill Bags

36 bag(s)

25 lb each

Find suppliers

General Tools & Consumables

Blowing machine rental (or supplier loaner)

tool

Blower hose (typically 3 in or larger)

tool

Depth markers / rulers

consumable

Attic baffles (eave vent chutes)

consumable

Dust mask / respirator, gloves, eye protection, long sleeves

consumable

Approximate results for planning only. Verify with a professional.

Loose-Fill Depth (One Area)

25 ft20 ft5.5 in target depth500.0 sq ft covered, 36 bag(s)Diagram shows one representative area's pour depth, simplified for clarity (not to scale).

Looking for the verification checklist, reference tables, or tips and mistakes?See the complete Blown-In Insulation Calculator.

Loose-fill insulation estimate

This page defaults to a 25 ft x 20 ft (500 sq ft) dense-pack floor cavity at a target R-21 (2x6 joists) using cellulose, reading Greenfiber SANCTUARY's own separate dense-pack sidewall & floor coverage chart — a meaningfully denser application than an open attic pour at the same R-value.

Works the same way for an attic/ceiling instead of a floor, or for fiberglass (attic/ceiling only) — change the area type and material below for your own job.

How the blown-in insulation calculation works

Each area is converted to a required WEIGHT of material, read from the real manufacturer coverage chart for the chosen material — not a flat area-divided-by-coverage% shortcut.

Step 1 - Look up target thickness from the real coverage chart

Target Thickness (in) = chart lookup, interpolated at your Target R-Value

Chart used = the chosen material's OWN chart for the chosen area type (attic/open-blow or dense-pack floor — never shared between the two)

Figures come from the chosen material's own published coverage chart, interpolated between the chart's real data points rather than assumed from one flat R-per-inch constant. Attic (open-blow) and dense-pack floor are genuinely different applications with different density requirements, so each has its own separate chart per material — never one shared table.

Step 2 - Subtract any existing insulation to get the ADDITIONAL depth (top-up mode)

Additional Depth (in) = Target Thickness - Existing Depth (floored at 0)

Additional Weight (lb/sq ft) = chart lookup, interpolated DIRECTLY at the Additional Depth

This matches real manufacturer top-up instructions: measure the existing depth, subtract it from the target chart thickness to get the remaining depth to add, then read the material weight for THAT additional depth directly off the chart — not a weight-difference calculation between the full target and the existing layer, which would overstate the real top-up requirement. Assumes the existing layer is the same material being added (see Limitations for mixed-material top-ups).

Step 3 - Pool the weight needed within each matching material

Required Weight for an Area = Additional Weight Needed x Area

Material Group Total = Sum of every area using the SAME material

Unlike precut batts or rolls, loose-fill is a bulk bagged product with no discrete piece size — a bag opened for one area can finish filling a different area of the SAME material with no "offcut" restriction. Every area using the same material pools its required weight together; different materials are always totaled separately, since a fiberglass bag and a cellulose bag are different products.

Step 4 - Add wastage, then convert to whole bags exactly once per material group

Final Weight = Material Group Total x (1 + Wastage / 100)

Final Bags (per material) = CEIL(That Material's Final Weight / Bag Weight)

Job Total = Sum of every material's own whole-bag count

Wastage is applied to each material group's own pooled weight directly — this step itself is NOT rounded, only scaled. The whole-bag conversion is the only rounding, and it happens exactly once PER MATERIAL — not once per area, and not once across a combined multi-material total.

Step 5 - Cost

Material Cost = Total Bags (all materials) x Cost per Bag

Labor Cost = Total Area x Labor Rate per sq ft

Total Cost = Material Cost + Labor Cost

Material cost assumes the same price per bag across every material in the job — if your job spans materials with genuinely different real prices, estimate each material's cost separately.

Real-World Blown-In Insulation Calculation Example

This example uses the active calculator inputs above and follows the same steps from the formula section.

Input Values Used

InputValueWhy it is used
Areas1 area(s)Determines how many weight calculations are combined
MaterialCellulose Loose-FillSets the coverage chart used for the weight lookup
Wastage10%Adds allowance on top of the chart-based weight

Step 1 & 2 — Chart Lookup & Required Weight

CalculationFormula / SubstitutionResult
Target thicknessChart lookup at R-215.5 in
Weight needed per sq ftChart lookup at 5.5 in1.6 lb/sq ft
Total weight needed (before wastage)Sum of the above800 lb

Step 3 & 4 — Final Weight & Bags

CalculationFormula / SubstitutionResult
Final weight (incl. wastage)800 lb x (1 + 10/100)880 lb
Cellulose Loose-Fill bagsCEIL(880 lb / 25 lb per bag)36 bag(s)
Total bags (all materials)Sum of every material's own whole-bag count36 bag(s)

Therefore, for this job you need 36 bag(s).

This page keeps things focused on the calculation above. For the full construction guide — verification checklist, reference tables, usage steps, tips, common mistakes, and limitations.See the complete Blown-In Insulation Calculator.

Disclaimer: This calculator provides approximate results for planning and estimation purposes only. Actual requirements may vary based on site conditions, materials, workmanship, and local building regulations. Always consult a qualified engineer, architect, or construction professional before making final decisions.

FAQ

Loose-fill (also called blown-in) insulation is fiberglass or cellulose fiber installed by machine-blowing it into an open attic/ceiling cavity, or packed densely into a closed floor or wall cavity (dense-pack), rather than precut into batts or continuous rolls.
An open attic pour only has to resist its own weight settling slightly over time. A dense-pack floor cavity is packed from below, against gravity, through netting — if it isn't dense enough it will sag and leave gaps at the top of the cavity over time, so manufacturers specify a much higher minimum installed density (3.5 lb per cubic ft for Greenfiber SANCTUARY dense-pack) than an attic ever needs.