Composite NRCS Curve Number — Mixed Watershed Worked Example (TR-55)
A subdivision drainage report needs runoff volume, not just peak flow. For watersheds in the 10–2,000 acre range, NRCS TR-55 (1986, USDA-NRCS) is the standard first pass: composite curve number from land-cover sub-areas, then the SCS rainfall–runoff equation for depth and volume. We work a 45-acre suburban catchment with four cover types, compute area-weighted CN (not runoff-weighted), derive potential maximum retention S and initial abstraction Ia, and solve runoff depth for a 2.5-inch design storm. Sources: NRCS TR-55, NRCS NEH Part 630, and the curve number reference.
The watershed
Preliminary plat for a 180-lot subdivision in the Piedmont (suburban Charlotte MSA). NRCS soil survey maps HSG B and C; no dual-group splits required on this tract. Land-cover delineation from plan sheets and NWI screening:
| Total drainage area | 45.0 ac |
| Lawn (good condition, HSG B) | 18.0 ac (yards, common turf) |
| Woods (fair, HSG C) | 12.0 ac (retained buffer, moderate understory) |
| Pavement / streets (HSG B) | 10.0 ac (roads, sidewalks — directly connected) |
| Townhome roofs → lawn | 5.0 ac impervious footprint draining to pervious lawn |
| Design rainfall depth (P) | 2.5 in (local water-quality / detention basis storm) |
| Antecedent moisture | AMC II (TR-55 default unless jurisdiction specifies otherwise) |
TR-55 Table 2-2 lookups
Curve numbers are looked up by cover type, condition, and hydrologic soil group. Values below are from TR-55 Table 2-2 (residential / urban / agricultural covers):
Woods, fair, HSG C → CN = 73 · 12.0 ac
Pavement / roads, HSG B → CN = 98 · 10.0 ac
Townhome cluster (roofs to lawn):
Impervious fraction ≈ 35% of 5.0 ac parcel → weighted sub-area CN:
CNtownhome = 0.35 · 98 + 0.65 · 61 = 34.3 + 39.7 = 74 · 5.0 ac
Source: TR-55 Table 2-2; townhome CN from area fraction of impervious (98) and lawn (61) on the parcel.
Cross-check tabular values on the curve number cheat sheet.
CNc = Σ(CNi · Ai) / Atotal
TR-55 Section 2-3: the composite curve number is a simple area-weighted average. You do not weight by prior runoff depth, peak flow, or imperviousness percentage of the whole watershed.
CNc = (1098 + 876 + 980 + 370) / 45.0
CNc = 3324 / 45.0 = 73.9 ≈ 74 (report as CN = 74)
Wrong method: weight by runoff volume from each sub-area after separate Q calcs → biased high
Wrong shortcut: treat entire site as “residential 1/4-acre, B” CN = 77 → +3 on CN, +15% on Q depth
TR-55 Equations 2-1 and 2-2
From TR-55 (potential maximum retention after runoff begins, in inches):
S = (1000 / 74) − 10 = 13.51 − 10 = 3.51 in
Initial abstraction (TR-55 empirical relation):
Ia = 0.2 · S = 0.2 · 3.51 = 0.70 in
Design rainfall P = 2.5 in > Ia = 0.70 in → runoff occurs
Some state manuals use Ia = 0.05S (NRCS revised formulation); confirm which equation your jurisdiction adopted before permit submittal.
SCS rainfall–runoff equation (TR-55 Eq. 2-3)
P − Ia = 2.5 − 0.70 = 1.80 in
Denominator = 1.80 + 3.51 = 5.31 in
Q = (1.80)2 / 5.31 = 3.24 / 5.31 = 0.61 in runoff depth
Runoff volume:
V = Q · A / 12 = 0.61 in · 45 ac / 12 = 2.29 ac-ft (74,600 cf)
Run the same inputs in the NRCS curve number calculator.
| CN assumed | S (in) | Q depth (in) | Volume (ac-ft) |
|---|---|---|---|
| 74 (composite, correct) | 3.51 | 0.61 | 2.29 |
| 77 (single residential shortcut) | 2.99 | 0.72 | 2.70 |
| 70 (ignoring pavement CN 98) | 4.29 | 0.50 | 1.88 |
AMC II, dual HSG, and connected impervious
From runoff depth to peak discharge
- No unit hydrograph. Runoff depth Q = 0.61 in is volume, not peak. TR-55 Chapter 4 tabular hydrograph or WinTR-55 routes this to peak qp using Tc and watershed shape.
- No detention routing. A 2.29 ac-ft water-quality volume at 0.61 in depth does not fit in a bioretention cell without routing through stage-storage.
- No Rational cross-check. At 45 ac, Rational Method is not appropriate for peak; NRCS is correct here. For comparison only: CN = 74 implies Cequiv ≈ 0.50–0.55 for large storms.
- No continuous simulation. SCM sizing for MS4 permits may require SWMM or HEC-HMS with long-term rainfall.
Full subdivision hydrology with TR-55 routing and sealed reports: HydroComplete.
Tools used in this example
Reproduce each step in PE-Calc: NRCS curve number / SCS runoff · Rational Method (small-area check only) · time of concentration (for hydrograph step). Reference values from the curve number cheat sheet.
Buying the lot? Check the drainage before you buy.
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