PV Panel Analysis

Photovoltaic Potential Mapping

Environment

Weather File
3D Geometry

No model loaded

Pro Tip: Name context models "Context", "Site" or "Environment" to treat them as shadows-only.

Analysis Period

Configuration

W
×
H

Optimization Advisor

Run 1° scan for max radiation

Advanced Settings

Energy Harvest

Compute Mode

Grid Resolution

Grid Size: 1 m
Visualization(Sky Dome)

Appearance

Geometry Tools

If analysis shows 0 radiation (black) on sunlit surfaces, try flipping them.

Archidemy Tools v2.1 © 2025

About PV Analysis·Find the roofs and facades where solar panels pay off.

What PV Analysis does

Runs a solar radiation analysis and converts the result into PV system size (kWp), expected annual generation (kWh/year), and specific yield per surface. Use it to decide where to place panels.

Input:
.3dm + .epw
Output:
kWp · kWh/yr
Bonus:
Best-tilt advisor

How it works

The same validated irradiance engine as Solar Radiation, converted into system size and yield. It is a siting and screening tool — it answers which surfaces are worth panelling and roughly what they return, not what a financier will underwrite.

  • Incident radiation per face from the Solar Radiation engine — EPW hourly data, ray-traced beam, discretised sky diffuse.
  • Underlying irradiance validated against a Radiance-based reference harness: direct beam exact, diffuse within 0.5%.
  • Usable area derived from the marked panel layers, then module power density applied to give kWp.
  • Annual generation from the hourly incident series with a system performance ratio for losses.
  • GPU and CPU paths agree to ±0.4%.

How to use it

  1. Load EPW + model. Climate file plus a .3dm of the building and context.
  2. Mark panel layers. Tell the tool which surfaces will carry PV panels.
  3. Pick a period. Annual for yearly yield. Seasonal for special studies.
  4. Run the simulation. Output is radiation by surface plus system size + generation.
  5. Try the optimisation advisor. Auto-find the tilt/azimuth that maximises annual yield.

Best used for

  • Deciding which roofs and facades are worth panelling at all.
  • Comparing specific yield between orientations on the same building.
  • An early feasibility number for a brief or a planning statement.
  • Showing a client why the south facade earns its cladding budget and the north does not.

Not a substitute for

  • A bankable yield assessment or an investment decision.
  • Grid-connection or inverter sizing.
  • Replacing a specialist PV consultant's report.

Known limits

  • Losses are a single system performance ratio, not a modelled inverter, cable and temperature chain — real systems vary either side of it.
  • Module temperature derating is not modelled, so hot climates read optimistic.
  • No string layout, no mismatch losses, no shading-per-module behaviour: one shaded module can cost far more than its share of area.
  • Soiling, snow and degradation over life are not included.
  • Typical-year weather, so a specific year will differ.

Read the full PV Analysis guide →