Tue 3 Mar

☀️ Sunrise 06:32
🌙 Sunset 18:02
🌕 Moon phase Full Moon (99%)
Time Height Type
02:20 0.99m Low tide
07:48 1.51m High tide
13:56 1.14m Low tide
19:52 1.70m High tide

This week

Date High tide Low tide
Tue 3 Mar 07:48 (1.51m) / 19:52 (1.70m) 02:20 (0.99m) / 13:56 (1.14m)
Wed 4 Mar 08:25 (1.55m) / 20:34 (1.64m) 02:48 (0.99m) / 14:43 (1.11m)
Thu 5 Mar 09:02 (1.61m) / 21:13 (1.58m) 03:07 (1.00m) / 15:30 (1.10m)
Fri 6 Mar 09:39 (1.66m) / 21:54 (1.52m) 03:24 (1.01m) / 16:17 (1.09m)
Sat 7 Mar 10:18 (1.71m) / 22:38 (1.46m) 03:46 (1.03m) / 17:06 (1.09m)
Sun 8 Mar 11:59 (1.76m) 05:13 (1.07m) / 18:58 (1.11m)
Mon 9 Mar 00:27 (1.42m) / 12:41 (1.79m) 05:44 (1.13m) / 19:52 (1.13m)
Tue 10 Mar 01:23 (1.40m) / 13:26 (1.80m) 06:20 (1.19m) / 20:53 (1.15m)
Wed 11 Mar 02:33 (1.39m) / 14:17 (1.79m) 07:04 (1.26m) / 22:01 (1.16m)
Thu 12 Mar 04:05 (1.40m) / 15:17 (1.77m) 08:04 (1.31m) / 23:12 (1.14m)

Location information

Coordinates 37.8147°, -121.4256°
Timezone America/Los_Angeles
Moon phase 🌕 Full Moon (99%)

Tide times in Doughty Cut Above Grantline Canal

Find accurate tide schedules for Doughty Cut Above Grantline Canal. Whether for fishing, sailing, or beach walks, get the information you need.

Make the most of Doughty Cut Above Grantline Canal's coastal environment with these tide-dependent activities:

High tide

Swimming

Best conditions for safe swimming with deeper water

Sailing

Ideal for boat departures and arrivals

Kayaking

Explore coastal caves and hidden spots

Low tide

Beach walking

Extended sandy areas to explore

Photography

Capture unique coastal landscapes

Crabbing

Find crabs in rocky areas

Understanding tides at Doughty Cut Above Grantline Canal helps you stay safe and make the most of your visit. Tides follow a roughly 12-hour cycle, with two high tides and two low tides each day.

Be aware of local conditions at Doughty Cut Above Grantline Canal. Some areas can become inaccessible during high tide.

Our tide predictions for Doughty Cut Above Grantline Canal are calculated using astronomical data and local observations for maximum accuracy.