Noise Levels in 89086, NV | Find Quiet Neighborhoods With Our Sound Map

54 dBA
Average noise across 89086
Quiet office to normal conversation
1,938
Residents above the EPA 55 dBA threshold
37% of 89086 residents
80 dBA
Loudest residential point
City bus interior

This map shows modeled outdoor noise across 89086 at 100-meter resolution, combining road, aviation, and rail sources. Green areas measure below 45 dBA. Orange and red exceed the EPA's 55 dBA outdoor threshold linked to long-term health effects. Use the layer toggles to view each source on its own or all together.

Overall
Road
Rail
Aviation
89086, NV Map of Noise Levels in 89086
Click the map to explore
35 45 55 70 90
Quietest (dBA) Loudest
Colorblind friendly off

What the numbers sound like

  • 30 dBAWhisper
  • 40 dBASoft rainfall
  • 45 dBAQuiet suburban street at night
  • 50 dBAQuiet office
  • 55 dBAEPA outdoor threshold: light traffic 100 ft away
  • 60 dBANormal conversation an arm's length away
  • 65 dBABusy restaurant
  • 70 dBAHighway traffic 50 ft away
  • 80 dBACity bus interior

Population Above the EPA Outdoor Threshold

The EPA's 55 dBA outdoor reference level is a common benchmark for residential noise exposure, especially for activity interference, annoyance, and long-term community noise concerns. About 1,938 89086 residents, or 36.9%, live above that level. By land area, 36.5% of 89086 is above 55 dBA.

See how noise in 89086 compares to similar-sized zip codes.

Noise by Part of 89086

Average noise levels for 89086 residents, grouped by direction from the center of 89086. Northern 89086 carries the highest population-weighted average; Eastern 89086 carries the lowest. Just 36% of residents in Eastern 89086 live in blocks above the EPA's 55 dBA threshold, three-quarters of the share in Northern 89086.

Central 89086

53.7 dBA · Moderate-loud
Quiet office to normal conversation

29% of people above 55 dBA

QuietLoud

Eastern 89086

53.1 dBA · Moderate-loud
Quiet office to normal conversation

36% of people above 55 dBA

QuietLoud

Northern 89086

55.2 dBA · Moderate-loud
Quiet office to normal conversation

54% of people above 55 dBA

QuietLoud

Western 89086

54.0 dBA · Moderate-loud
Quiet office to normal conversation

45% of people above 55 dBA

QuietLoud

Northern 89086 sounds about 16% louder than Eastern 89086 to the human ear, a 2.1 dBA gap. Every 10 dBA roughly doubles perceived loudness. Within any of these directions, two homes a quarter mile apart can still differ by 10 or more dBA depending on how close they sit to a major highway.

Loudest Road Corridors

The model evaluates every road in 89086 using federal traffic counts, posted speeds, heavy-truck ratios, and pavement type. The source level shown is the modeled noise at the road centerline, where it is loudest. Noise drops with distance, faster in vegetated areas and slower over open pavement.

RoadTypeAvg. source dBAPeak source dBA
Cc215n Principal arterial 65.5 67
Losee Rd Local 56.7 63
Cc215s Principal arterial 59.0 59
E Rome Blvd Local 55.0 55
E Deer Springs Way Local 55.0 55

How far back from Cc215n do you need to be?

Cc215n produces an estimated 67 dBA at its loudest centerline points. Noise drops logarithmically with distance, with the exact rate depending on what's between you and the road. Tree cover, walls, terrain, and pavement type all matter. At roughly a quarter mile back, traffic fades into the noise level of a soft rainfall.

At source
67 dBA
Highway traffic 50 ft away
165 ft
53 dBA
Quiet office to normal conversation
330 ft
46 dBA
Quiet suburban street at night
660 ft
38 dBA
Soft rainfall
¼ mile
35 dBA
Soft rainfall
½ mile
35 dBA
Soft rainfall

Calculated from the model's calibrated attenuation formula. About 0% of 89086 sits under tree canopy (much lighter than most zip codes) and roughly 67% is impervious surface like pavement and rooftops. Both are folded into the per-place decay rate above. Heavier canopy pulls noise down faster with distance; impervious surfaces slow the drop.

Rail Noise

Active freight rail runs through parts of 89086. For most blocks the rail-only contribution is small. Combined road-plus-rail noise rarely exceeds road noise on its own. The exceptions are the handful of blocks within roughly a quarter mile of the right-of-way during pass-through hours.

Use the Rail toggle on the map above to isolate rail's contribution from road and aviation.

Airport Noise

Harry Reid International (LAS) sits south of 89086. The U.S. Department of Transportation measures aviation noise around this airport directly, and the model uses those federal measurements rather than synthetic predictions.

Blocks under the approach and departure paths carry combined road-plus-aviation noise, with some exceeding 75 dBA on the map's Overall layer. Blocks on the opposite side of 89086, particularly to the north, show no measurable aviation contribution. Use the Aviation toggle on the map above to isolate the airport's footprint.

How Noise Is Distributed Across 89086

The bar chart below shows the share of 89086 residents in each noise band. About 48% of residents live below the EPA's 55 dBA threshold, and roughly 1% live in blocks above 60 dBA. Long-term exposure in that range is linked to elevated stress hormones and cardiovascular risk.

How 89086 Compares

89086 sits the lowest among the peer group. Below: how 89086's average outdoor noise and share of residents above the EPA threshold compare with 89085, 89109, 89143, and 89179.

Average noise level (dBA)

89086's 53.7 dBA pop-weighted average is the lowest among the peer group. Nevada as a whole averages 53.6 dBA and the U.S. averages 52.0 dBA. Both are lower than 89086 because most of either area is rural land away from major roads.

Share of residents above 55 dBA

About 36.9% of 89086 residents live in blocks where outdoor levels exceed the EPA's 55 dBA threshold. That's fewer than any of its peer group. Measured by land area instead, 36.5% of 89086's footprint sits above 55 dBA, against a Nevada average of 27.1% and a national average of 28.1%.

What This Means if You're Moving to 89086

  • Distance from highways matters more than the neighborhood name. Two homes in the same zip code can differ by 20 dBA if one sits 100 meters from Cc215n and the other 500 meters away. The model captures this at 100-meter resolution, so noise exposure changes block by block.
  • Tree canopy can help reduce modeled noise exposure. Roughly 0% of 89086 is under tree cover (much lighter than most zip codes), and the dominant land cover is medium-intensity developed land. Both are measured from federal USDA Forest Service and USGS satellite imagery at 30-meter resolution. Streets with 60% or higher canopy show 3 to 5 dBA lower noise than comparable streets with bare ground or pavement, which is why the per-place decay rate above already accounts for it.
  • Airport noise is directional. Harry Reid International's approach paths concentrate aviation noise to the south. Neighborhoods to the north of downtown show no measurable contribution from the airport.

Sources & Methodology

The BestNeighborhood noise model is calibrated against nearly one million federal ground-truth measurements across four states. Road noise is computed from segment-level federal traffic data and propagated outward using physics-based acoustic decay, with attenuation rates that depend on the surrounding land cover.

Federal datasets used:

FHWA Highway Performance Monitoring System: road geometry, traffic counts, lane configuration
U.S. DoT Bureau of Transportation Statistics National Transportation Noise Map: aviation and rail noise, road calibration ground truth
USGS / MRLC National Land Cover Database: land cover and impervious surface coverage
USDA Forest Service Tree Canopy Cover: vegetation density for sound propagation
U.S. Census Bureau TIGER/Line: block-level geography and population
U.S. EPA Levels Document: 55 dBA outdoor reference level

All inputs are published federal datasets. Block-level noise is computed by combining road, rail, and aviation sound sources in the energy domain, the same physics used in professional environmental noise assessments. Read the full methodology.