WHAT'S HAPPENING NOW
—— ft above typical
Finding the top signal on the water…
Live river level, flow, historical records and forecast for Orcutt C near Orcutt CA in CA, United States, built from official government gauge data.
Orcutt C near Orcutt CA is in the Santa Maria watershed, California.
The record on this creek runs for more than 44 years. The highest level in that span was 5.73 ft (1.75 m) in January 2023. The lowest was 0.01 ft (0 m) in August 2018.
That spread matters for anyone watching a crossing, bank, or pump intake: this is a creek that can sit near very low water and still climb to a much higher record level in a single season. The typical annual swing is 5.9 in (15 cm), so the day-to-day background changes are modest compared with the extremes.
The seasonal pattern is clear. November is the highest typical month at 1.36 ft (0.42 m), while August is the lowest typical month at 0.87 ft (0.27 m). In plain terms, the creek tends to run higher in late fall and lower in late summer.
The gauge drains 18.5 sq mi (47.9 km2) above the station. That is the area feeding this reading, not the full watershed name on the map.
For local users, that upstream area is small enough that the creek can respond quickly to wet periods and dry out fast between them. The seasonal note for this region fits that pattern: mountain and snowmelt waters often build into spring and early summer, winter storms can bring the biggest floods, and summer flows can fall very low. On this creek, the record book shows the low end very clearly.
The number at the top of the page is most useful when you compare today’s reading with the median for this calendar day, not with the raw elevation alone. A creek at 1 ft can be high for one date and ordinary for another.
This station is run by the USGS, and its 44 years of record give that daily comparison some context. If today’s reading is above the median, the creek is running above its usual level for this date; if it is below, it is running below that mark. That is the better way to judge what the water is doing right now.
Readings come from official government gauges and are rolled into daily records: the daily mean, high and low for every day on record. Each calendar day gets its own baseline from the full history, so the level you see is compared against what this specific date usually looks like rather than an annual average.
Real-time water levels, forecasts, and alerts for lakes and rivers across Canada, the US and the UK. Built on official government data.
Nibi Metrics tracks more than 13,000 gauged lakes and rivers across Canada, the United States and the United Kingdom, reading directly from official federal monitoring networks: the Water Survey of Canada, the United States Geological Survey, Quebec's provincial hydrometric network, and the Environment Agency for England. Every number on the platform is measured, not modelled - taken from a government gauge on the water itself and compared against that location's own historical record for this exact date.
The level right now, in feet or metres, updated as the source agency publishes new readings - for many stations that is every five to fifteen minutes. How today compares to typical: every location carries its own typical-for-this-date band built from its historical record, so a reading is never just a number - it is above, below, or near what this water usually does on this calendar day. Which way it is moving: a measured RISING, FALLING, or STEADY verdict computed from the gauge's own recent readings, with the rate of change - the difference between a flood ending and one beginning. What comes next: level forecasts up to 72 hours ahead, driven by the gauge's recent behaviour, upstream water, and quantitative precipitation forecasts, alongside live radar, lightning, and weather for the surrounding region.
Set a threshold on any location - a level, a distance above typical, or a rate of climb - and Nibi emails or notifies you the moment the gauge crosses it. Cottagers use it for spring freshet, anglers for river conditions, marinas and municipalities for operations. The scanning runs around the clock against the same measured data shown on every page.
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