参考文献/References:
[1]侯水生. 2018年度水禽产业发展现状、未来发展趋势与建议[J]. 中国畜牧杂志,2019, 55(3): 124-128.
[2]吴艳,皮劲松,李成凤,等. 夏季四层层叠式笼养鸭舍环境参数测定与分析[J]. 中国家禽, 2019, 41(11): 32-36.
[3]SHEN L Y, SA R N, NIU J G, et al. Environmental parameters of broiler house with three-overlap cages in winter and autumn[J]. Animal Husbandry and Feed Science, 2017, 9(5): 275-278.
[4]王树才,王玉泉,李振强. 提高鸭蛋清洁度的层叠式笼养蛋鸭笼底网的优化设计[J]. 农业工程学报, 2019, 35(4): 211-217.
[5]景文渊,袁军,乔克,等. 猪舍在不同开窗方式下的气流场模拟研究[J]. 西南师范大学学报, 2016, 41(12): 68-73.
[6]姚家君,郭彬彬,丁为民,等. 基于鹅舍气流场CFD模拟的通风系统结构优化与验证[J]. 农业工程学报, 2017, 33(3): 214-220.
[7]SHEN D, WU S, DAI P Y, et al. Distribution of particulate matter and ammonia and physicochemical properties of fine particulate matter in a layer house [J]. Poultry Science, 2018,97(12):4137-4149.
[8]ZHAO Y, SHEPHERD T A, LI H, et al. Environmental assessment of three egg production systems Part I: Monitoring system and indoor air quality[J]. Poultry Science, 2015, 94(3): 518-533.
[9]ZHAO Y, ZHAO D, MA H, et al. Environmental assessment of three egg production systems Part III: Airborne bacteria concentrations and emissions[J]. Poultry Science, 2016, 95(7): 1473-1481.
[10]李俊营,詹凯,唐建宏,等. 六层层叠式笼养鸡舍夏季环境质量测定与分析[J]. 上海农业学报, 2017, 33(1): 120-124.
[11]郑树利,徐友祎,郭铃. 高密度蛋鸡舍最小通风温度场分析[J]. 中国家禽, 2018, 40(20): 42-46.
[12]PAWAR S R, CIMBALA J M, WHEELER E F, et al. Analysis of poultry house ventilation using computational fluid dynamics[J]. Transactions of the ASABE, 2007, 50(4): 1373-1382.
[13]KIM K S, YOON J Y, KWON H J, et al. 3-D CFD analysis of relative humidity distribution in greenhouse with a fog cooling system and refrigerative dehumidifiers[J]. Biosystems Engineering, 2008, 100(2): 245-255.
[14]MOSTAFA E, LEE I B, SONG S H, et al. Computational fluid dynamics simulation of air temperature distribution inside broiler building fitted with duct ventilation system[J]. Biosystems Engineering, 2012, 112(4): 293-303.
[15]KIC P, ZAJICEK M. A numerical CFD method for the broiler house ventilation analysis[J]. Journal of Information Technology in Agriculture, 2011, 4(1): 1-7.
[16]王福军. 计算流体力学分析-CFD软件原理与应用[M]. 北京: 清华大学出版社, 2004: 7-11.
[17]孙永波,王亚,萨仁娜,等. 不同湿度对肉鸡生长性能、抗氧化能力和免疫功能的影响[J]. 中国农业科学, 2018, 51(24): 4720-4728.
[18]于群,柳平增,李宝全,等.基于MSP430的禽舍智能控制系统设计及应用[J].江苏农业科学,2018,46(9):236-240.
[19]刘烨虹,刘修林,侯若羿,等. 基于WSN的蛋鸡活动量监测系统设计[J].南方农业学报,2018,49(7):1453-1459.
[20]孟祥海,况辉,周海川.环保新政与畜禽规模养殖绿色化转型[J].江苏农业科学,2018,46(18):343-346.
[21]周莹,彭骞骞,张敏红,等.相对湿度对间歇性偏热环境下肉鸡体温、酸碱平衡及生产性能的影响[J]. 动物营养学报, 2015, 27(12): 3726-3735.
[22]王阳,王朝元,李保明. 蛋鸡舍冬季CO2浓度控制标准与最小通风量确定[J]. 农业工程学报, 2017,33(2): 240-244.
[23]沈丹,戴鹏远,吴胜,等. 冬季封闭式肉种鸡舍空气颗粒物、氨气和二氧化碳分布特点及PM2.5理化特性分析[J]. 畜牧兽医学报, 2018, 49(6): 1178-1193.
[24]LIANG Y, XIN H, WHEELER E F, et al. Ammonia emissions from U.S. laying hen houses in Iowa and Pennsylvania[J]. Transactions of the Asae American Society of Agricultural Engineers, 2005, 48(5): 1927-1941.