Assessment of modeling slatted floor as porous media in livestock buildings in two ventilation systems

Publikation: KonferencebidragPaperForskningfagfællebedømt

Standard

Assessment of modeling slatted floor as porous media in livestock buildings in two ventilation systems. / Rong, Li; Bjerg, Bjarne; Zhang, Guoqiang.

2015. 810-817 Paper præsenteret ved 14th Conference of International Building Performance Simulation Association, BS 2015, Hyderabad, Indien.

Publikation: KonferencebidragPaperForskningfagfællebedømt

Harvard

Rong, L, Bjerg, B & Zhang, G 2015, 'Assessment of modeling slatted floor as porous media in livestock buildings in two ventilation systems', Paper fremlagt ved 14th Conference of International Building Performance Simulation Association, BS 2015, Hyderabad, Indien, 07/12/2015 - 09/12/2015 s. 810-817.

APA

Rong, L., Bjerg, B., & Zhang, G. (2015). Assessment of modeling slatted floor as porous media in livestock buildings in two ventilation systems. 810-817. Paper præsenteret ved 14th Conference of International Building Performance Simulation Association, BS 2015, Hyderabad, Indien.

Vancouver

Rong L, Bjerg B, Zhang G. Assessment of modeling slatted floor as porous media in livestock buildings in two ventilation systems. 2015. Paper præsenteret ved 14th Conference of International Building Performance Simulation Association, BS 2015, Hyderabad, Indien.

Author

Rong, Li ; Bjerg, Bjarne ; Zhang, Guoqiang. / Assessment of modeling slatted floor as porous media in livestock buildings in two ventilation systems. Paper præsenteret ved 14th Conference of International Building Performance Simulation Association, BS 2015, Hyderabad, Indien.8 s.

Bibtex

@conference{56e38b32a7454dc1b2734b2335fbf857,
title = "Assessment of modeling slatted floor as porous media in livestock buildings in two ventilation systems",
abstract = "This study investigates the effect of modeling the slatted floor as porous media on prediction of ammonia emissions and airflow patterns. Two approaches to determine the resistance coefficients of porous media modeling are adopted by using two geometries in CFD modeling. The results reveal that the ammonia emission with slatted floor modeled as actual size (SLM) is generally lower than the value with floor modeled as porous media (POM). Difference of air speed distribution cl.",
author = "Li Rong and Bjarne Bjerg and Guoqiang Zhang",
year = "2015",
month = jan,
day = "1",
language = "English",
pages = "810--817",
note = "14th Conference of International Building Performance Simulation Association, BS 2015 ; Conference date: 07-12-2015 Through 09-12-2015",

}

RIS

TY - CONF

T1 - Assessment of modeling slatted floor as porous media in livestock buildings in two ventilation systems

AU - Rong, Li

AU - Bjerg, Bjarne

AU - Zhang, Guoqiang

PY - 2015/1/1

Y1 - 2015/1/1

N2 - This study investigates the effect of modeling the slatted floor as porous media on prediction of ammonia emissions and airflow patterns. Two approaches to determine the resistance coefficients of porous media modeling are adopted by using two geometries in CFD modeling. The results reveal that the ammonia emission with slatted floor modeled as actual size (SLM) is generally lower than the value with floor modeled as porous media (POM). Difference of air speed distribution cl.

AB - This study investigates the effect of modeling the slatted floor as porous media on prediction of ammonia emissions and airflow patterns. Two approaches to determine the resistance coefficients of porous media modeling are adopted by using two geometries in CFD modeling. The results reveal that the ammonia emission with slatted floor modeled as actual size (SLM) is generally lower than the value with floor modeled as porous media (POM). Difference of air speed distribution cl.

UR - http://www.scopus.com/inward/record.url?scp=84976443379&partnerID=8YFLogxK

M3 - Paper

AN - SCOPUS:84976443379

SP - 810

EP - 817

T2 - 14th Conference of International Building Performance Simulation Association, BS 2015

Y2 - 7 December 2015 through 9 December 2015

ER -

ID: 199461273