Lightingconcept
Illuminance calculation, daylight factor, and typical interior fc levels
One-line orientation
The lumen method estimates the light reaching a work surface after fixture efficiency and maintenance losses. Daylight factor separately compares indoor daylight with outdoor daylight.
Key points
Illuminance calculation (lumen method / zonal cavity method)
Formula:
fc = (Lumens × Lamps/fixture × No. Fixtures × CU × LLF) ÷ Area (ft²)
- Lumens per lamp: manufacturer-rated initial light output for one lamp.
- Lamps per fixture: number of lamps in each luminaire.
- Number of fixtures: total fixtures in the space.
- CU (Coefficient of Utilization): 0–1. Efficiency factor combining:
- Fixture photometric distribution (direct, indirect, diffuse).
- Room Cavity Ratio (RCR): deeper rooms = lower CU; lower ceilings = higher CU.
- Surface reflectances (ceiling, walls, floor). Found in fixture manufacturer photometric tables.
- LLF (Light Loss Factor): 0–1. Accounts for inevitable light reduction over time:
- LLD (Lamp Lumen Depreciation): lamps dim as they age — even before failure.
- LDD (Luminaire Dirt Depreciation): dust and grime on lenses/reflectors reduce output.
- LLF is project-specific; about 0.6–0.8 is a preliminary review range.
- Area: net work-plane area (ft²) of the space being calculated.
Rearranged to find number of fixtures needed:
No. Fixtures = (fc_target × Area) ÷ (Lumens × Lamps/fixture × CU × LLF)
Daylight Factor (DF)
- Definition: DF = (indoor illuminance ÷ outdoor illuminance under overcast sky) × 100%
- Measured or calculated at the work plane; expressed as a percentage.
- DF is a property of the building geometry (window size, glazing transmittance, room depth, obstruction).
| DF range | Daylight adequacy | Design implication |
|---|---|---|
| < 2% | Low | Artificial lighting required most of the time; near-window zone only marginally daylit |
| 2–5% | Moderate | Supplemental artificial lighting often needed; daylight harvesting sensors worthwhile |
| > 5% | High daylight availability | Check glare, solar heat gain, and heat loss; high daylight is not automatically desirable |
Typical interior fc levels
| Level | fc Range | Example spaces |
|---|---|---|
| Minimal / egress | 1–10 fc | Egress paths, corridors, hallways, lobbies |
| Ambient / general | 10–20 fc | Corridors, waiting rooms, lobbies |
| General task | 30–50 fc | Open offices, retail stores, conference rooms |
| Classroom / general study | about 30–50 fc | Typical range; detailed tasks may need more |
| Precision / critical | 100+ fc | Laboratories, medical/surgical, manufacturing lines |
Typical classrooms need about 30–50 fc; detailed tasks may need more. Daylight can reduce electric-lighting demand, but it must also be controlled for glare and unwanted heat gain.
Confusions / comparison
| Factor | What it corrects for | Who determines it | Typical range |
|---|---|---|---|
| CU | Fixture + room geometry + surface reflectance efficiency | Fixture manufacturer photometrics + room RCR | 0.50–0.85 |
| LLF | Time-based light loss (lamp aging + dirt) | Designer / maintenance schedule | Project-specific; about 0.6–0.8 for preliminary review |
| Both together | How much of initial lamp lumens actually reaches the work plane | — | product often 0.40–0.70 |
| Calculation approach | When used | Input |
|---|---|---|
| Lumen method (zonal cavity) | Uniform ambient lighting design | Manufacturer lumens, CU tables, LLF |
| Point-by-point (inverse square) | Localized / task lighting; accent | Distance from source, beam angle |
| Daylight factor | Natural light adequacy assessment | Window geometry, glazing, obstructions |
Related
→ Lighting: Lighting metrics (fc definition, lumen definition) · Lamp types (lumens per lamp by type) · Lighting controls (daylight harvesting adjusts fc automatically using DF sensors) · Systems: Thermal (glazing SHGC and solar gain interact with daylight strategy).
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