2003Applied Engineering in AgricultureOpen access

MEASUREMENT OF AIR VELOCITY IN ANIMAL OCCUPIED ZONES USING AN ULTRASONIC ANEMOMETER

A.V. van Wagenberg, M.T.J. de Leeuw

Open full text 11 citations

Abstract

The air velocity in the animal occupied zone (AOZ) of a pig facility influences the thermal comfort of pigs andis affected by the ventilation system in the building. Little is known about the relationship between the air velocity in the AOZand the ventilation system design. This article describes the development and a practical test of an air velocity measuringsystem in the AOZ using ultrasonic anemometers. The anemometers were protected by a wire protection cage, which resulted in a lower air velocity measurement that wascorrected by a linear correction factor of 0.83. A suitable aggregation interval for timeaveraged air velocity measurementsin occupied pens was 300 s. The effect of animal activity on the measured air velocity was minimal and therefore neglected,but the location of the anemometer in a pen was deemed important. A representative location was above the resting placeof the animals over the solid floor. The presence of an anemometer in a pen resulted in some minor changes in the lyingbehavior of the animals. In the experimental doorventilated room with weaned piglets there was a clear (0.04 m/s) and significant difference inaverage air velocity between pens 3 and 9 (P < 0.001). The maximum air velocity of 0.15 m/s advised was exceeded in 21%of the time a pen in the back of the room. In a pen closer to the door, air velocities appeared to be too high less than 2% ofthe time. The measuring system described in this article can be combined with air quality and temperature measurements in the AOZfor determination of the performance of ventilation systems and comparison of ventilation systems.

Open-access reader

About this research paper

What this paper is about

The air velocity in the animal occupied zone (AOZ) of a pig facility influences the thermal comfort of pigs andis affected by the ventilation system in the building. Little is known about the relationship between the air velocity in the AOZand the ventilation system design. This article describes the development and a practical test of an air velocity measuringsystem in the AOZ using ultrasonic anemometers. The anemometers were protected by a wire protection cage, which resulted in a lower air velocity measurement that wascorrected by a linear correction factor of 0.83. A suitable aggregation interval for timeaveraged air velocity measurementsin occupied pens was 300 s. The effect of animal activity on the measured air velocity was minimal and therefore neglected,but the location of the anemometer in a pen was deemed important. A representative location was above the resting placeof the animals over the solid floor. The presence of an anemometer in a pen resulted in some minor changes in the lyingbehavior of the animals. In the experimental doorventilated room with weaned piglets there was a clear (0.04 m/s) and significant difference inaverage air velocity between pens 3 and 9 (P < 0.001). The maximum air velocity of 0.15 m/s advised was exceeded in 21%of the time a pen in the back of the room. In a pen closer to the door, air velocities appeared to be too high less than 2% ofthe time. The measuring system described in this article can be combined with air quality and temperature measurements in the AOZfor determination of the performance of ventilation systems and comparison of ventilation systems.

Why it matters

OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The air velocity in the animal occupied zone (AOZ) of a pig facility influences the thermal comfort of pigs andis affected by the ventilation system in the building. Little is known about the relationship between the air velocity in the AOZand the ventilation system design. This article describes the development and a practical test of an air velocity measuringsystem in the AOZ using ultrasonic anemometers. The anemometers were protected by a wire protection cage, which resulted in a lower air velocity measurement that wascorrected by a linear correction factor of 0.83. A suitable aggregation interval for timeaveraged air velocity measurementsin occupied pens was 300 s. The effect of animal activity on the measured air velocity was minimal and therefore neglected,but the location of the anemometer in a pen was deemed important. A representative location was above the resting placeof the animals over the solid floor. The presence of an anemometer in a pen resulted in some minor changes in the lyingbehavior of the animals. In the experimental doorventilated room with weaned piglets there was a clear (0.04 m/s) and significant difference inaverage air velocity between pens 3 and 9 (P < 0.001). The maximum air velocity of 0.15 m/s advised was exceeded in 21%of the time a pen in the back of the room. In a pen closer to the door, air velocities appeared to be too high less than 2% ofthe time. The measuring system described in this article can be combined with air quality and temperature measurements in the AOZfor determination of the performance of ventilation systems and comparison of ventilation systems.

Key concepts: Anemometer, Air velocity, Airflow, Ventilation (architecture), Environmental science, Ultrasonic sensor, Meteorology, Acoustics

Related papers

Back to paper searchBrowse research topicsOriginal source
MEASUREMENT OF AIR VELOCITY IN ANIMAL OCCUPIED ZONES USING AN ULTRASONIC ANEMOMETER — Research Paper | ScholarLens