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Carb Depot Calculator

Updated Sep 2026 Used 0 times
Enter the measured valuesUse values from one internally consistent test or planning scenario.
Use a measured estimate when available; this is not total lean mass.
Choose the scenario concentration you intend to model.
Enter a transparent liver-store assumption.
Used only for the water-association scenario.

Guest calculations stay on this device. Signed-in results sync privately.

Your result

Glycogen depot scenario

Enter your values, then calculate to see a verified result.

Inputs usedReview the information used for this result.
Full calculation and sourcesOpen Full calculation and sources to audit the formula, assumptions, fixtures, and interpretation limits.

Versioned calculationFormula v1.0.0

Method reviewed 2026-09-27PubMed - postexercise muscle glycogen resynthesis; PubMed - practical carbohydrate loadingFormula v1.0.0

Method shown

The selected equation and assumptions stay visible.

Cross-checked

Supporting outputs expose unit and protocol mistakes.

Actionable

The result links to the next relevant planning task.

Result actions
1
Step 1Enter an estimate of skeletal muscle mass.30 kg muscle storage scenario
2
Step 2Choose the concentration scenario explicitly.30 kg muscle storage scenario
3
Step 3Enter a liver-store and water assumption.30 kg muscle storage scenario

Interpretation

The calculator does not measure glycogen.

Skeletal-muscle estimates and glycogen concentration assumptions can both be wrong.

Associated water varies and should not be interpreted as fat gain.

Use this result

Public verification recordFormula v1.0.0
Review scope
Compartment Arithmetic, Kcal Conversion, Hydration Ratio, And Supported Scenario Boundaries.
Review team
CalculatorGeek Expert Review Team
Verified
2026-09-27
Next source review
2027-03-27
Automated fixtures
1 cases

Review method

Recompute Muscle glycogen = skeletal muscle mass x entered g/kg; total = muscle + liver; energy = total x 4 kcal/g. independently; verify unit normalization, protocol selection, internal consistency, and invalid boundaries.

Known limitations

  • The calculator does not measure glycogen.
  • Skeletal-muscle estimates and glycogen concentration assumptions can both be wrong.
  • Associated water varies and should not be interpreted as fat gain.
  • The energy equivalent is stored carbohydrate energy, not guaranteed usable race energy.

Primary sources

Latest update

2026-09-27 ยท Added complete endurance-suite calculator with verified model, source ledger, premium result, and unified contextual navigation.

Published calculation checks

CaseInputsExpected result
30 kg muscle storage scenarioskeletal_muscle_mass_kg=30 kg, muscle_glycogen_g_per_kg=15 gkg, liver_glycogen_grams=100 g, water_per_glycogen=3 ratiomuscle_glycogen_grams=450, total_glycogen_grams=550, associated_water_liters=1.65
On this page

Direct answer

The scenario adds muscle glycogen, calculated as muscle mass times concentration, to the entered liver glycogen amount.

Actual glycogen requires specialized measurement and varies with depletion, diet, training status, muscle mass, and protocol.

How to use the calculator

  1. Enter an estimate of skeletal muscle mass.
  2. Choose the concentration scenario explicitly.
  3. Enter a liver-store and water assumption.
  4. Use the result as a range-planning model, not a body measurement.

Inputs, outputs, and result meaning

Inputs

  • Estimated skeletal muscle mass: Use a measured estimate when available; this is not total lean mass.
  • Muscle glycogen concentration scenario: Choose the scenario concentration you intend to model.
  • Liver glycogen scenario: Enter a transparent liver-store assumption.
  • Associated water assumption: Used only for the water-association scenario.

Outputs

  • Total glycogen scenario: A displayed result from the stated method and the entered assumptions.
  • Muscle glycogen: A displayed result from the stated method and the entered assumptions.
  • Liver glycogen: A displayed result from the stated method and the entered assumptions.
  • Energy equivalent: A displayed result from the stated method and the entered assumptions.
  • Associated water: A displayed result from the stated method and the entered assumptions.

Formula and methodology

Method: Muscle glycogen = skeletal muscle mass x entered g/kg; total = muscle + liver; energy = total x 4 kcal/g.

This is a scenario model. It intentionally requires storage assumptions rather than inferring a precise depot from body mass.

Worked examples

30 kg muscle at 15 g/kg

Muscle glycogen is 450 g. Adding 100 g liver glycogen gives 550 g total and about 1.65 L associated water at 3 g/g.

Interpretation and limitations

  • The calculator does not measure glycogen.
  • Skeletal-muscle estimates and glycogen concentration assumptions can both be wrong.
  • Associated water varies and should not be interpreted as fat gain.
  • The energy equivalent is stored carbohydrate energy, not guaranteed usable race energy.

Frequently asked questions

Can body weight tell me exact glycogen stores?

No. That is why the storage assumptions remain visible.

Why does water appear in the result?

Glycogen is stored with associated water, affecting short-term scale mass.

Is this the same as carb loading?

No. Storage state and dietary intake are connected but not interchangeable calculations.

How should I compare results over time?

Repeat the same protocol, units, equipment setup, and environmental conditions, then review the supporting outputs rather than only the headline number.

Sources and transparency

CalculatorGeek independently recomputed every published fixture on 2026-09-27. Sources establish the equation, protocol, or interpretation boundary; they do not turn an estimate into a laboratory measurement or personalized advice.