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Time:2026-08-29 15:29:52 Popularity:7
NiuBoL has exported a weather station system to Armenia for an outdoor environmental monitoring project. The supplied configuration includes wind speed, wind direction, atmospheric temperature, humidity and pressure, solar radiation monitoring, a data logger or data collector, a solar power supply system and an outdoor monitoring enclosure.
Armenia is located in the South Caucasus and has a terrain dominated by mountains and highlands. Weather conditions can vary by altitude and site exposure, which makes local monitoring useful for agriculture, solar-resource assessment, environmental observation, infrastructure projects and research sites.
| System part | Function | Project value |
|---|---|---|
| NBL-W-SS wind speed sensor | Measures local wind speed. | Supports wind exposure review, equipment safety assessment and environmental records. |
| NBL-W-DS wind direction sensor | Records wind direction. | Helps identify prevailing wind direction and local airflow patterns. |
| NBL-W-LBTH atmospheric sensor | Measures air temperature, relative humidity and atmospheric pressure. | Provides the basic weather context for long-term outdoor monitoring. |
| Solar radiation sensor | Measures incoming solar radiation. | Supports solar-resource evaluation, agricultural analysis and environmental research. |
| Data logger / data collector | Receives, stores and forwards sensor signals. | Connects field measurements with local display or remote data systems. |
| Solar power supply system | Supplies power for outdoor operation. | Allows flexible installation where mains power is not available. |
| Outdoor monitoring enclosure | Houses data acquisition, wiring and power components. | Improves protection, service access and wiring reliability. |
For agricultural sites, weather station data can support irrigation planning, frost-risk observation, greenhouse management and field climate records. Wind and temperature data are especially useful where elevation and valley exposure create local differences. For solar-energy projects, solar radiation, wind and air temperature provide a local basis for resource assessment and performance review.
For environmental and research projects, the same station can support long-term datasets with clear units and timestamps. A data logger makes the system easier to integrate with a monitoring platform, while the outdoor enclosure and solar supply help the station operate as a field system rather than as loose individual sensors.
Before ordering a similar station, the buyer should confirm the required parameters, output protocol, power condition, communication method, pole height, cable length and receiving platform. NiuBoL weather sensors can be selected with project-oriented interfaces such as RS485 / Modbus RTU depending on the product configuration, which is useful for PLC, RTU, gateway and data-logger integration.
The installer should document sensor orientation, height, grounding, enclosure layout and channel names. Wind sensors should avoid avoidable obstruction. The atmospheric sensor should be mounted in a radiation shield with airflow. The solar radiation sensor should remain level and unshaded. These details determine whether the station produces data that a project team can trust.
NiuBoL supplies automatic weather stations, environmental monitoring sensors, agricultural sensors, water-quality sensors and IoT data acquisition equipment for overseas engineering projects. For distributors, contractors and system integrators, standardized model selection, open communication options and complete accessory planning can reduce uncertainty during quotation and commissioning.
The Armenia weather station system demonstrates a practical configuration for outdoor environmental monitoring: wind, atmospheric and solar-radiation sensors connected through a data acquisition layer, supported by solar power and protected by an outdoor enclosure. For similar projects, a clear RFQ should describe the monitoring purpose, site environment, communication protocol, power plan and acceptance method so the supplied system matches the actual field requirement.
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