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River Monitoring Stations in Rutland

England • 7 monitoring stations across 3 rivers
0
High level
0
Above normal
7
Normal or below
7
Total stations

Rainfall across the Midlands, year by year

Rutland sits in the Met Office's the Midlands area. Each bar is one year's total; the dark line is the ten-year average, which is what a trend looks like once single wet and dry years are smoothed out; the dashed line is the 1991–2020 average of 810 mm. 2025 brought 717 mm, close to that. The wettest year here since 1996 was 2012 (1,084 mm), the driest 2011 (595 mm).

the Midlands: yearly rainfall from 1996 to 2025, wettest 2012 at 1,084 mm, driest 2011 at 595 mm1996: 617 mm1997: 733 mm1998: 897 mm1999: 904 mm2000: 1,034 mm2001: 794 mm2002: 926 mm2003: 611 mm2004: 839 mm2005: 682 mm2006: 794 mm2007: 927 mm2008: 939 mm2009: 782 mm2010: 647 mm2011: 595 mm2012: 1,084 mm2013: 758 mm2014: 920 mm2015: 782 mm2016: 785 mm2017: 741 mm2018: 727 mm2019: 973 mm2020: 927 mm2021: 811 mm2022: 721 mm2023: 1,000 mm2024: 1,000 mm2025: 717 mm810 mm199620102025

Rainfall over a whole region, not a measurement in Rutland itself, and a wet year is not the same thing as a flood: what floods a river is how much falls at once and how wet the ground already was. Average rainfall: HadUK-Grid v1.3.2, Met Office. Contains public sector information licensed under the Open Government Licence v3.0.

How much rain has fallen in Rutland

Rain gauge totals for the last day, week and month, by town:

Braunston-in-Rutland · Whissendine · Wing

Is it getting worse in Rutland?

Year by year, each figure divided by what changed about the measuring — the gauge fleet, the flood areas on the register, the overflows monitored.

River gauges reaching a high level

Rutland, Environment Agency, SEPA and NRW gauges, 2012–2025

The last 7 years average 71.4%, against 42.9% for the first 7 — 67% higher.

River gauges reaching a high level: one bar per year from 2012 to 2025, 50.0% at the start and 100.0% at the end, against a long-run average of 57.1%. The line is the rolling average.2012: 50.0% — 1 gauges with a high day from 2 gauges reporting2013: 100.0% — 2 gauges with a high day from 2 gauges reporting2014: 50.0% — 1 gauges with a high day from 2 gauges reporting2015: 0.0% — 0 gauges with a high day from 2 gauges reporting2016: 100.0% — 2 gauges with a high day from 2 gauges reporting2017: 0.0% — 0 gauges with a high day from 2 gauges reporting2018: 0.0% — 0 gauges with a high day from 2 gauges reporting2019: 50.0% — 1 gauges with a high day from 2 gauges reporting2020: 100.0% — 2 gauges with a high day from 2 gauges reporting2021: 50.0% — 1 gauges with a high day from 2 gauges reporting2022: 50.0% — 1 gauges with a high day from 2 gauges reporting2023: 50.0% — 1 gauges with a high day from 2 gauges reporting2024: 100.0% — 2 gauges with a high day from 2 gauges reporting2025: 100.0% — 2 gauges with a high day from 2 gauges reporting57.1%2012: La Nina winter, ONI -0.7 degrees C2015: El Nino winter, ONI +0.7 degrees C2016: El Nino winter, ONI +2.5 degrees C2018: La Nina winter, ONI -0.7 degrees C2019: El Nino winter, ONI +1.0 degrees C2020: El Nino winter, ONI +0.7 degrees C2021: La Nina winter, ONI -1.0 degrees C2022: La Nina winter, ONI -0.8 degrees C2023: La Nina winter, ONI -0.5 degrees C2024: El Nino winter, ONI +1.8 degrees C2025: La Nina winter, ONI -0.5 degrees C20122015201820212025

El Niño winter La Niña winter. Marked for context, not as a cause — these are states of the Pacific, and one wet fortnight moves a British year more than a whole season's pattern does. What El Niño and La Niña are, and what they did here.

The raw count went from 1 to 2 gauges with a high day between 2012 and 2025, divided every year by the same 2 gauges reporting — which is what makes the two ends comparable.

Each gauge's high level was last re-fitted on 2 October 2026, over that gauge's whole record. It is re-fitted monthly, so these percentages can move a little between rebuilds even in a week with no rain.

What this chart finds is BUNCHING — years when many gauges reached their own high level at once. It cannot tell you whether rivers run higher than they used to, and here is why: each gauge is measured against the level it itself reaches about one day a year over its own whole record, so every gauge crosses that bar about once a year by construction, however wet or dry its river has become. The bar is re-fitted every month as records grow, so a wet decade raises it and damps the very rise you are looking for. Dividing by the gauges that reported keeps the growing fleet out of the count; the like-for-like chart below holds the gauges themselves fixed as well.

Flood alerts and warnings

Rutland, Environment Agency warning archive, 2006–2025

The last 9 years average 4.71 per area, against 3.45 per area for the first 9 — 37% higher.

Flood alerts and warnings: one bar per year from 2006 to 2025, 2.00 per area at the start and 3.14 per area at the end, against a long-run average of 4.02 per area. The line is the rolling average.2006: 2.00 per area — 2 alerts and warnings from 1 areas warned2007: 6.80 per area — 34 alerts and warnings from 5 areas warned2008: 5.40 per area — 27 alerts and warnings from 5 areas warned2009: 2.00 per area — 6 alerts and warnings from 3 areas warned2010: 1.67 per area — 5 alerts and warnings from 3 areas warned2012: 4.57 per area — 32 alerts and warnings from 7 areas warned2013: 3.29 per area — 23 alerts and warnings from 7 areas warned2014: 3.80 per area — 19 alerts and warnings from 5 areas warned2015: 1.50 per area — 3 alerts and warnings from 2 areas warned2016: 3.00 per area — 18 alerts and warnings from 6 areas warned2017: 2.33 per area — 7 alerts and warnings from 3 areas warned2018: 2.40 per area — 12 alerts and warnings from 5 areas warned2019: 10.20 per area — 51 alerts and warnings from 5 areas warned2020: 3.86 per area — 27 alerts and warnings from 7 areas warned2021: 5.60 per area — 28 alerts and warnings from 5 areas warned2022: 4.40 per area — 22 alerts and warnings from 5 areas warned2023: 4.86 per area — 34 alerts and warnings from 7 areas warned2024: 5.63 per area — 45 alerts and warnings from 8 areas warned2025: 3.14 per area — 22 alerts and warnings from 7 areas warned4.02 per area2006: La Nina winter, ONI -0.9 degrees C2007: El Nino winter, ONI +0.6 degrees C2008: La Nina winter, ONI -1.8 degrees C2009: La Nina winter, ONI -0.9 degrees C2010: El Nino winter, ONI +1.5 degrees C2012: La Nina winter, ONI -0.7 degrees C2015: El Nino winter, ONI +0.7 degrees C2016: El Nino winter, ONI +2.5 degrees C2018: La Nina winter, ONI -0.7 degrees C2019: El Nino winter, ONI +1.0 degrees C2020: El Nino winter, ONI +0.7 degrees C2021: La Nina winter, ONI -1.0 degrees C2022: La Nina winter, ONI -0.8 degrees C2023: La Nina winter, ONI -0.5 degrees C2024: El Nino winter, ONI +1.8 degrees C2025: La Nina winter, ONI -0.5 degrees C20062010201620202025

El Niño winter La Niña winter. Marked for context, not as a cause — these are states of the Pacific, and one wet fortnight moves a British year more than a whole season's pattern does. What El Niño and La Niña are, and what they did here.

The raw count went from 2 to 22 alerts and warnings between 2006 and 2025, while the areas warned went from 1 to 7 — which is what the chart divides by.

Raw warning counts have risen steeply since 2006, but so has the number of flood areas that can be warned at all. This chart divides by the areas actually warned, which is the part that is about the weather rather than about the register. Warning policy also changed over the period.

Sewage spills per overflow

Rutland, Environment Agency annual returns, 2021–2025

2021: 23.4 spills. 2025: 17.9 spills — 24% lower. That is two years compared, not a trend: the years in between jump about more than the difference between these two.

Sewage spills per overflow: one bar per year from 2021 to 2025, 23.4 spills at the start and 17.9 spills at the end, against a long-run average of 18.4 spills. The line is the rolling average.2021: 23.4 spills — 164 spills from 7 monitored overflows2022: 9.5 spills — 105 spills from 11 monitored overflows2023: 10.9 spills — 207 spills from 19 monitored overflows2024: 30.2 spills — 634 spills from 21 monitored overflows2025: 17.9 spills — 375 spills from 21 monitored overflows18.4 spills20212022202320242025

The raw count went from 164 to 375 spills between 2021 and 2025, while the monitored overflows went from 7 to 21 — which is what the chart divides by.

Only five years exist, so this is a comparison and not a trend. The number of monitored overflows grew across them, which is why the figure is per overflow. Spills also track the weather: 2022 was a drought summer, and it is one of only five years here, so it pulls the comparison about on its own.

See all four across the whole UK, and how to read them

Rebuilt on 5 October 2026, from data banked up to the end of 2026. Only whole calendar years are counted, so 2026 will appear here once it has finished. The rebuild runs weekly.

Unknown River (5)
River Chater (1)
River Welland (1)