Assessment of spatial variability of bedding variables in compost bedded pack barns with climate control system

Abstract The aim of this research was to evaluate the spatial distribution of bedding variables in a climate-controlled compost bedded pack barn (CBP) equipped with an evaporative cooling system associated with a tunnel ventilation mode. The study was conducted on a farm in the West Mesoregion of Mi...

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Published inAnais da Academia Brasileira de Ciências Vol. 93; no. 3; p. e20200384
Main Authors OLIVEIRA, CARLOS EDUARDO A., DAMASCENO, FLÁVIO A., FERRAZ, GABRIEL A.S., NASCIMENTO, JOÃO ANTÔNIO C. DO, VEGA, FELIPE A.O., TINÔCO, ILDA F.F., ANDRADE, RAFAELLA R.
Format Journal Article
LanguageEnglish
Portuguese
Published Academia Brasileira de Ciências 01.01.2021
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Summary:Abstract The aim of this research was to evaluate the spatial distribution of bedding variables in a climate-controlled compost bedded pack barn (CBP) equipped with an evaporative cooling system associated with a tunnel ventilation mode. The study was conducted on a farm in the West Mesoregion of Minas, MG, Brazil. The interior of the animal facility was divided into a mesh of 120 equidistant points, where the bedding surface temperature (tb-sur), the bedding temperature at 0.20 m depth (tb-20) and the bedding penetration resistance (PRb) of layer 0 to 0.20 m depth were measured. Bedding samples were collected to obtain the moisture (Mb) and pH in the surface and at 0.20 m depth. Geostatistics technique was used to evaluate the dependence and spatial distribution. Through the bedding area, the tb-sur presented low variability, with 6 ºC of amplitude, and tb-20 presented highest values (up to 55 °C). The spatial distribution of Mb-20 was similar to that observed on the surface and its highest levels occurred in the region near the feed alley (> 40%). The distribution of pH was similar in both layers. The tendency of high PRb occurred in the layer between 0.15 and 0.20 m (0 and 1500 kPa).
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ISSN:0001-3765
1678-2690
1678-2690
DOI:10.1590/0001-3765202120200384