The airflow velocity pattern generated by a widely used non-catching precipitation gauge (the Thies laser precipitation monitor or LPM) when immersed in a wind field is investigated using computational fluid dynamics (CFD). The simulation numerically solves the unsteady Reynolds-averaged Navier–Stokes (URANS) equations and the setup is validated against dedicated wind tunnel measurements. The adopted k-ω shear stress transport (SST) turbulence model closely reproduces the flow pattern generated by the complex, non-axisymmetric outer geometry of the instrument. The airflow pattern near the measuring area varies with the wind direction, the most intense recirculating flow and turbulence being observed when the wind blows from the back of the ...
The use of windshields to reduce the impact of wind on snowmeasurements is common. This paper invest...
Recent studies have used numerical models to estimate the collection efficiency of solid precipitati...
Light Detection and Ranging (LIDAR) systems are able to measure the speed of incoming wind before it...
The airflow velocity pattern generated by a widely used non-catching precipitation gauge (the Thies ...
Wind is recognized as the primary cause for the undercatch of solid and liquid precipitation as expe...
A physical full-scale experimental set-up was designed and implemented in the wind tunnel to reprodu...
In operational conditions wind is the main environmental source of measurement biases for catching-t...
The aerodynamic response of snow gauges when exposed to the wind is responsible for a significant re...
Wind tunnel (WT) experiments were conducted to reproduce the wind-induced deviation of rain drop tra...
Accurate precipitation measurement is a fundamental requirement in a broad range of applications inc...
The most widely used device to measure rainfall is the tipping bucket rain gauge (TBR), although the...
The present study addresses the aerodynamic response of the recently developed "Hotplate" liquid/sol...
Wind is the first environmental source of precipitation undercatch for catching-type precipitation g...
The aerodynamic response of snow gauges when exposed to the wind is responsible for a significant re...
The airflow surrounding any catching-type rain gauge when impacted by wind is deformed by the presen...
The use of windshields to reduce the impact of wind on snowmeasurements is common. This paper invest...
Recent studies have used numerical models to estimate the collection efficiency of solid precipitati...
Light Detection and Ranging (LIDAR) systems are able to measure the speed of incoming wind before it...
The airflow velocity pattern generated by a widely used non-catching precipitation gauge (the Thies ...
Wind is recognized as the primary cause for the undercatch of solid and liquid precipitation as expe...
A physical full-scale experimental set-up was designed and implemented in the wind tunnel to reprodu...
In operational conditions wind is the main environmental source of measurement biases for catching-t...
The aerodynamic response of snow gauges when exposed to the wind is responsible for a significant re...
Wind tunnel (WT) experiments were conducted to reproduce the wind-induced deviation of rain drop tra...
Accurate precipitation measurement is a fundamental requirement in a broad range of applications inc...
The most widely used device to measure rainfall is the tipping bucket rain gauge (TBR), although the...
The present study addresses the aerodynamic response of the recently developed "Hotplate" liquid/sol...
Wind is the first environmental source of precipitation undercatch for catching-type precipitation g...
The aerodynamic response of snow gauges when exposed to the wind is responsible for a significant re...
The airflow surrounding any catching-type rain gauge when impacted by wind is deformed by the presen...
The use of windshields to reduce the impact of wind on snowmeasurements is common. This paper invest...
Recent studies have used numerical models to estimate the collection efficiency of solid precipitati...
Light Detection and Ranging (LIDAR) systems are able to measure the speed of incoming wind before it...