N E S W 360°
36 / 18
RWY 36/18
HDG 360°
LEN 2,975 ft
Yuba Airport

Runway 36 at 34U

Runway 36/18 at Yuba Airport (34U) in Elk Rapids is a 2,975 ft, unlit, turf-f runway oriented 000°/180°. The runway is 100 ft wide. SkyMeter has observed 14 landings and 0 departures on this runway over the last 30 days, with approximately 0.0% of arrivals resulting in a go-around. Trace data shows an average final-approach slope of 2.7°, a typical touchdown ground speed of 187 kt, a 7.1 kt average crosswind component.

Last 30 Days
14 Operations
0 Deps / 14 Arrs

Runway 36/18 at Yuba Airport (34U) in Elk Rapids is a 2,975 ft, unlit, turf-f runway oriented 000°/180°. The runway is 100 ft wide. SkyMeter has observed 14 landings and 0 departures on this runway over the last 30 days, with approximately 0.0% of arrivals resulting in a go-around. Trace data shows an average final-approach slope of 2.7°, a typical touchdown ground speed of 187 kt, a 7.1 kt average crosswind component.

Runway at a Glance

Arrival Volume

14 landings observed on Runway 36 in the last 30 days, alongside 0 departures.

Peak Hour

Busiest landing window observed at 20:00 with 18 arrivals on the recent sample.

Moderate Crosswind Component

Average crosswind on landing is 7.1 kt at touchdown, measured against runway 36 alignment.

Approach Slope

Final-approach slope averages 2.7° on Runway 36, consistent with the standard 3° glide path.

Landing Behavior and Touchdown Performance

The metrics below are computed from ADS-B trace data observed at Runway 36 over the last 30 days. Each value is shown only when at least 10 valid samples were available; sparse cells are hidden rather than estimated.

Avg approach slope
2.7°
Avg touchdown GS
187 kts
Avg headwind
-0.1 kt

Hourly Landing Distribution

03:00 3 landings
12:00 1 landings
13:00 8 landings
15:00 4 landings
17:00 4 landings
18:00 4 landings
19:00 3 landings
20:00 18 landings
21:00 4 landings

Recent observed landings on Runway 36 grouped by hour-of-day (UTC).

Approach Types and Categories

Aircraft approach runways using different procedures based on weather conditions, visibility, and available navigation equipment. An Instrument Landing System (ILS) approach provides precision horizontal and vertical guidance using ground-based radio signals, enabling aircraft to land in low visibility conditions. Visual approaches require pilots to maintain visual contact with the runway and surrounding terrain, typically used during clear weather. Area Navigation (RNAV) approaches use GPS technology to guide aircraft along specific flight paths.

Approach Categories Explained

Category (CAT) classifications define minimum visibility and decision height requirements for instrument approaches. Higher categories enable operations in lower visibility conditions.

CAT I
Decision Height: 200 ft
Visibility: 550m
CAT II
Decision Height: 100 ft
Visibility: 300m
CAT III
Decision Height: 0-50 ft
Visibility: 0-200m
Visual
Clear of Clouds
Visibility: 5 km

Wind and Environmental Factors

Wind conditions directly impact runway operations, influencing approach difficulty, landing performance, and runway selection. Runway 36 benefits from favorable wind alignment, with prevailing winds creating minimal crosswind components for most operations. Average wind speeds of 12 knots pose no operational constraints for commercial aircraft.

24-Hour Wind Pattern

20:00
286° at 9 kts, gusting 25 kts
9 kts
12:00
65° at 3 kts, gusting 6 kts
3 kts
13:00
214° at 5 kts, gusting 18 kts
5 kts
17:00
259° at 12 kts, gusting 28 kts
12 kts
18:00
261° at 12 kts, gusting 25 kts
12 kts
21:00
279° at 8 kts, gusting 11 kts
8 kts
19:00
31° at 6 kts, gusting 5 kts
6 kts
03:00
208° at 6 kts, gusting 16 kts
6 kts
15:00
282° at 9 kts, gusting 14 kts
9 kts

Wind patterns show typical diurnal variation with stronger winds during midday hours.

Average Speed
12 kts
Peak Gust
18 kts
Prevailing Direction
360°
Avg Crosswind
8 kts

Related Pages

About This Data

This analysis covers 14 operations recorded over the past 30 days, derived from global ADS-B flight broadcasts. Coverage may be incomplete in areas with limited ground-station reception, and statistics may vary with weather and traffic volume.