Quadrantids from Cape Town in 2026
Not visible from this latitude
Quadrantids: below the horizon here
The Quadrantids radiant stays 10° below the horizon at Cape Town for the whole night, so the shower produces nothing here whatever the sky does. Cloud cover is not the limiting factor — latitude is.
- Maximum (local)
- 23:12 · 3 January 2026
- Night of
- 3 January 2026
- Best window
- none
- Peak rate
- 0.0/h
- Radiant (best)
- -10.4° NE
- Moon
- 100% lit
- Cloud cover
- unavailable
Local to Cape Town
- Sunset
- 20:01
- Astronomical dusk
- 21:44
- Astronomical dawn
- 03:57
- Sunrise
- 05:41
- Dark hours
- 6 h 14 min
- Radiant culminates
- 09:11 · 6.5°
- Solar midnight
- 00:51
- Latitude
- 33.9°S
Light-pollution data for this location is not connected yet. Rates use the reference rural sky (limiting magnitude 6.5) the zenithal hourly rate is defined against, so no Bortle class is claimed for Cape Town.
Quadrantids from Cape Town: the short answer
Maximum for the Quadrantids in 2026 is 23:12 Cape Town time on 3 January 2026. From 33.9°S the radiant gets to 6.5° at 09:11, the Moon is 100% lit, and the ideal-sky ceiling is 0.0 meteors an hour.
That ranks it 11th of twelve from Cape Town this year, behind the Geminids (60.7/h) and the Orionids (12.3/h).
The radiant track over this city
Bootes carries the radiant. From Cape Town it clears the horizon at 06:40 on a bearing of 23° (NNE), reaches 6.5° at 09:11 in the north, and drops back below the horizon at 11:43. Within the observing window it peaks at -10.4°.
When it gets dark here
Cape Town loses the Sun at 20:01 and gets it back at 05:41. True astronomical darkness — the only part that counts for faint meteors — runs 21:44 to 03:57, 6 h 14 min out of 9 h 40 min of night.
Local solar midnight, the true middle of the night, falls at 00:51 here rather than at 00:00: Africa/Johannesburg runs 46 minutes ahead of mean solar time at 18.42°E. That offset is why the best hour on this page is not the hour you would guess from the clock.
What the Moon does here
Moonlight is the limiting factor on this night from Cape Town. The Moon is 100% lit and only 0 of 9 sampled hours are moon-free. Moonrise 20:32. Moonset 06:25. At the best hour it stands 3.7° above the horizon, 86° from the radiant, pulling the limiting magnitude down to 2.71.
Why 0 an hour and not 110
Converting ZHR 110 into something useful for Cape Town means multiplying by sin(-10.4°) and dividing by 2.1 raised to (6.5 − 2.71). That lands at 0.0 meteors an hour, from fast 40.4 km/s entries.
Hour by hour the modelled rate runs from 0.0 at 21:00 (radiant -74.1°) to 0.0 at 05:00 (radiant -10.4°), peaking at 0.0. That spread across 9 hours is why a "what time" answer beats a "how many" answer.
The stream comes from Minor planet 2003 EH1 and Comet C/1490 Y1 and is listed as active 28 December to 12 January, so 3 January 2026 is the best night from Cape Town rather than the only one.
Watching from around Cape Town
Cape Town, Western Cape is the 60th largest of the 300 cities covered here, with a population of 4.77 million at 25 m above sea level. The nearest other cities on the site are Johannesburg (1262 km NE), Durban (1272 km ENE), Pretoria (1308 km NE) — close enough that the radiant altitudes barely change, far enough that sunset and moonrise do.
What this page does not know
Light-pollution data for this location is not connected yet. Rates on this page are computed against the reference rural sky the zenithal hourly rate is defined for (naked-eye limiting magnitude 6.5); they are not a claim about how bright the sky is where you are standing. Once the light-pollution layer is connected these figures will be recomputed for the local sky and will generally fall.
Cloud cover is a forecast, not a constant, so it is resolved when you load the tonight card and is deliberately absent from this prerendered page — the hourly table shows "unavailable" rather than assuming clear skies. Meteor outbursts, local terrain and building horizons are not modelled.
A single observer with an unobstructed horizon typically records 30–50% below the ideal-sky figure. Give your eyes twenty minutes to adapt, keep bright screens away, look about halfway up the sky rather than straight at the radiant, and count for a full hour before judging a shower.
Expected rate through the night
Meteors per hour for one observer under the reference sky. Local time, Africa/Johannesburg. Cloud cover is not included — it is unknown at build time.
Hour by hour from Cape Town
| Local | Radiant | Moon alt | Moon lit | Sun alt | Cloud | Lim. mag | Meteors/h |
|---|---|---|---|---|---|---|---|
| 21:00 | -74.1° | 3.7° | 100% | -11.1° | n/a | 2.71 | 0.0 |
| 22:00 | -71.9° | 12.9° | 100% | -20.3° | n/a | 6.06 | 0.0 |
| 23:00 | -64.6° | 20.6° | 100% | -27.5° | n/a | 5.80 | 0.0 |
| 00:00 | -55.5° | 26.3° | 100% | -32.0° | n/a | 5.62 | 0.0 |
| 01:00 | -45.8° | 29.3° | 100% | -33.3° | n/a | 5.53 | 0.0 |
| 02:00 | -36.2° | 29.2° | 99% | -31.0° | n/a | 5.53 | 0.0 |
| 03:00 | -26.9° | 26.1° | 99% | -25.6° | n/a | 5.62 | 0.0 |
| 04:00 | -18.2° | 20.4° | 99% | -17.7° | n/a | 5.66 | 0.0 |
| 05:00 | -10.4° | 12.6° | 99% | -8.1° | n/a | 1.06 | 0.0 |
"Cloud: n/a" means the forecast is not resolved on this prerendered page, not that the sky is clear.
Where to go next
Quadrantids from other cities
- Quadrantids from Dar es Salaam 3698 km NE · 11.7/h
- Quadrantids from Johannesburg 1262 km NE · 0.0/h
- Quadrantids from Kinshasa 3307 km N · 9.9/h
- Quadrantids from Lagos 4761 km NNW · 17.0/h
Other showers from Cape Town
- Geminids from Cape Town 60.7/h on 14 December
- Orionids from Cape Town 12.3/h on 21 October
- eta-Aquariids from Cape Town 8.6/h on 6 May
- April Lyrids from Cape Town 7.0/h on 22 April
- Southern delta-Aquariids from Cape Town 4.7/h on 31 July
Around the same time of year
Quadrantids — everything about this shower
All meteor showers from Cape Town