PlaceDossier / BC places / Lakes
BC lake · 2 km² · Okanagan River watershed
Ellison Lake
Its median summer Secchi depth over 2012–2025 was 0.7 m, from 14 readings. Murkier than 100% of the 62 BC lakes with enough recent readings. It lies in Kelowna.
The readings
205 summer readings from open water on record from 1970 to 2025, at 2 sampling sites.
| Median since 2012 | Compared with BC lakes | |
|---|---|---|
| Secchi depth | 0.7 m 2012–2025, 14 readings | Murkier than 100% of the 62 BC lakes with enough recent readings. |
| Total phosphorus | 67 µg/L 2012–2025, 24 readings | Higher than 97% of the 95 BC lakes with enough recent readings. |
| Chlorophyll a | 31 µg/L 2012–2025, 14 readings | Higher than 98% of the 83 BC lakes with enough recent readings. |
Median each year (bigger dot, more readings)Middle half of BC lakesBC median
Source: BC Environmental Monitoring Data System (EnMoDS) results, Environmental Monitoring and Analysis Branch, Province of BC, records to September 19, 2026 (Open Government Licence – British Columbia); lake outlines and names: Freshwater Atlas lakes, Province of BC (Open Government Licence – British Columbia). Summaries by PlaceDossier.
Nutrient level Inferred
Reads as eutrophic (rich in nutrients, with more algae and weed growth).
| Index | Class | |
|---|---|---|
| From secchi depth (0.7 m, 2012–2025) | 65 | eutrophic |
| From total phosphorus (67 µg/L, 2012–2025) | 65 | eutrophic |
| From chlorophyll a (31 µg/L, 2012–2025) | 64 | eutrophic |
Inferred by us, not a provincial classification. The index was built for summer readings from the middle of a lake; ours mix sites and months, so treat the class as a rough guide.
How we worked this out
Carlson's trophic state index (Carlson 1977, Limnology and Oceanography 22:361) turns each median into a score: 60 − 14.41 ln(Secchi m), 14.42 ln(phosphorus µg/L) + 4.15, 9.81 ln(chlorophyll µg/L) + 30.6. Classes after Carlson and Simpson (1996): under 40 oligotrophic, 40 to 50 mesotrophic, 50 to 70 eutrophic, 70 and over hypereutrophic.
Year by year
| Year | Secchi depth | Total phosphorus | Chlorophyll a |
|---|---|---|---|
| 2025 | 0.8 m (1) | 79 µg/L (2) | 67 µg/L (1) |
| 2024 | 0.7 m (1) | 66 µg/L (2) | 19 µg/L (1) |
| 2023 | 0.8 m (1) | 72 µg/L (2) | 54 µg/L (1) |
| 2022 | 0.7 m (1) | 65 µg/L (2) | 22 µg/L (1) |
| 2021 | 0.4 m (1) | 58 µg/L (2) | 41 µg/L (1) |
| 2020 | 1.2 m (1) | 57 µg/L (2) | 37 µg/L (1) |
| 2019 | 1.5 m (1) | 32 µg/L (2) | 13 µg/L (1) |
| 2018 | 0.5 m (1) | 66 µg/L (2) | 16 µg/L (1) |
| 2017 | 0.5 m (1) | 69 µg/L (2) | 64 µg/L (1) |
| 2016 | 0.5 m (1) | 83 µg/L (2) | 14 µg/L (1) |
| 2015 | 0.6 m (1) | 93 µg/L (1) | 14 µg/L (1) |
| 2014 | 0.5 m (1) | 88 µg/L (1) | 86 µg/L (1) |
| 2013 | 0.8 m (1) | 65 µg/L (1) | 32 µg/L (1) |
| 2012 | 4.2 m (1) | 33 µg/L (1) | 29 µg/L (1) |
| 2011 | 1.0 m (1) | 35 µg/L (1) | 15 µg/L (1) |
| 2010 | 0.8 m (1) | 15 µg/L (1) | 4.7 µg/L (1) |
| 2009 | 0.7 m (1) | 9.0 µg/L (1) | 27 µg/L (1) |
| 2008 | – | 27 µg/L (1) | 5.1 µg/L (1) |
| 2006 | – | 30 µg/L (2) | 20 µg/L (3) |
| 2005 | – | 48 µg/L (2) | 9.5 µg/L (2) |
| 2004 | 0.8 m (1) | 89 µg/L (2) | 38 µg/L (1) |
| 2003 | 0.4 m (2) | 85 µg/L (2) | 42 µg/L (2) |
| 2002 | 0.9 m (4) | 38 µg/L (4) | 13 µg/L (4) |
| 2001 | 0.7 m (2) | 99 µg/L (2) | 56 µg/L (2) |
| 2000 | 0.8 m (2) | 83 µg/L (2) | 8.0 µg/L (2) |
| 1999 | 0.7 m (3) | 67 µg/L (2) | 16 µg/L (2) |
| 1998 | 0.8 m (2) | – | – |
| 1996 | – | 58 µg/L (2) | 17 µg/L (2) |
| 1995 | 1.1 m (2) | 35 µg/L (2) | 14 µg/L (2) |
| 1994 | 1.1 m (2) | 48 µg/L (2) | 12 µg/L (2) |
| 1993 | – | 33 µg/L (2) | 14 µg/L (2) |
| 1992 | 0.5 m (2) | 48 µg/L (2) | 23 µg/L (2) |
| 1991 | 0.8 m (2) | 28 µg/L (2) | 23 µg/L (2) |
| 1990 | – | 92 µg/L (1) | 17 µg/L (2) |
| 1989 | – | 73 µg/L (2) | 28 µg/L (2) |
| 1988 | 0.3 m (2) | 144 µg/L (2) | 32 µg/L (2) |
| 1987 | – | 63 µg/L (2) | 0.5 µg/L (2) |
| 1986 | – | 61 µg/L (2) | – |
| 1985 | 1.2 m (2) | 58 µg/L (2) | – |
| 1984 | 0.9 m (1) | 153 µg/L (1) | 19 µg/L (1) |
| 1983 | 0.8 m (1) | 80 µg/L (1) | 26 µg/L (1) |
| 1982 | 1.0 m (1) | 60 µg/L (1) | 27 µg/L (1) |
| 1981 | 1.5 m (1) | 38 µg/L (1) | – |
| 1980 | 0.4 m (1) | 93 µg/L (1) | 44 µg/L (1) |
| 1979 | 1.0 m (5) | 52 µg/L (5) | 16 µg/L (6) |
| 1971 | – | 34 µg/L (1) | – |
| 1970 | – | 92 µg/L (4) | – |
Median of each year's May to October readings; the number of readings is in brackets.
Source: BC Environmental Monitoring Data System (EnMoDS) results, Environmental Monitoring and Analysis Branch, Province of BC, records to September 19, 2026 (Open Government Licence – British Columbia); lake outlines and names: Freshwater Atlas lakes, Province of BC (Open Government Licence – British Columbia). Summaries by PlaceDossier.
Where it was sampled
- 0500265 Central 154 readings
- 0500114 North end 51 readings
Site names are tidied from the provincial records; the IDs find each site's full record there.
What this record doesn't cover
Algae bloom reports and invasive mussel checks aren't in this record: the province's Algae Watch map and mussel monitoring aren't published as open data. For swimming, check the regional health authority's beach advisories; for blooms and mussels, ask the province's regional environment office or the local lake association.
Readings are from the province's monitoring database: samples taken by provincial staff, volunteer lake monitors, and companies and local governments that sample under their permits. We keep the ice-free season (May to October), and for phosphorus and chlorophyll only samples from the top 5 m. We leave out sites whose names put them at a water intake, a sewage or industrial outfall, a mine, or a permit holder's works or the water receiving its discharge, or on the shore (a beach, dock or boat launch): water there can differ a lot from the open lake. Each year's figure is the median of that year's readings. We give a lake a summary, a comparison with other lakes and a nutrient level only when it has at least 10 summer readings from open water, spread over at least 3 different years, since 2012; the summary is the median of those readings. With fewer, or only older ones, we show the readings and say there are too few to judge the lake. A reading below the lab's detection limit counts at that limit. One site can be a bay rather than the open lake, so a lake's figures can differ from one end to the other.
Water quality changes with the season, the weather and the part of the lake. These are past readings, not a test of the water today: before you buy, ask the local government and the lake association what's known, and test a drinking-water intake yourself.