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首页> 外文期刊>Transactions of the ASAE >EFFECTS OF STRUCTURAL AND STACKING CONFIGURATION OF CONTAINERS FOR TRANSPORTING CHICKS IN THEIR MICROENVIRONMENT
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EFFECTS OF STRUCTURAL AND STACKING CONFIGURATION OF CONTAINERS FOR TRANSPORTING CHICKS IN THEIR MICROENVIRONMENT

机译:在小环境中运输小鸡的容器的结构和堆叠构型的影响

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摘要

Breeder (layer) chicks in transit are vulnerable to oxygen shortages that stem from the lack of mechanical ventilation in holding areas such as warehouse and cargo compartments of aircraft. Such vulnerable periods tend to occur around departure time of an aircraft when the cargo door is closed but the compartment has not been pressurized, and vice versa upon landing. To maintain the well-being of the chicks, sufficient air exchange through the containers is essential during these periods. This study examined the air flow rates and internal thermal conditions of a commercial chick container as influenced by its structural and stacking configurations. Specifically, a 2×2 factorial arrangement of container structures was examined that consisted of a regular cardboard box (62 × 47 × 15 cm) and a box modified by adding extra vent holes (128 vs 92) on the side walls; each type of box was covered with either the regular cardboard lid or a modified plastic poultry grid lid. The effects on air flow rate of vertical distances (VD) from 2.5 cm (currently used) to 17.8 cm between the boxes were evaluated with one stack of four containers. The effects on air flow rate of horizontal distances (HD) from 5.1 to 15.2 cm between the stacks were evaluated with four stacks of six containers each. NI/CR electrical heating wires evenly located above the excelsior bedding were used to simulate sensible heat production rate (21 W at 30°C) of 88 unfed day-old chicks that are normally held per container. The results revealed that the measured ventilation rate under the current box structure and stacking arrangement (averaging 0.013 L/s/chick or 0.028 CFM/chick) seemed sufficient during cold weather but was considerably below values recommended for mild to hot weather. An improved, practical container structure and stacking configuration features the regular container body with the grid lid, 7.6 cm VD between boxes, 5.1 cm HD between stacks linked with the existing cardboard spacers. The improved structure and stacking configurations had an average air flow rate of 0.062 L/s/chick. The corresponding internal temperature rise of the containers relative to the test room temperature was 3.4, 4.7, 4.8, 5.0, 5.5, and 4.8 K for layer 1 (bottom layer), 2, 3, 4, 5 and 6 (top layer), respectively, compared to 5.5, 8.1, 9.1, 9.8, 9.9, 7.8 K for the current box structure and stacking arrangement. Because of the excessive air flow rate and potential cold draft for the top layer, the original cardboard lid was recommended for the top containers.
机译:运送中的种鸡(蛋鸡)易受氧气短缺的影响,这是由于飞机的仓库和货舱等存放区缺乏机械通风造成的。当货舱门关闭但舱室尚未加压时,这种脆弱时期往往发生在飞机起飞时间附近,反之亦然。为了保持雏鸡的健康,在这些期间必须通过容器进行足够的空气交换。这项研究检查了商用雏鸡容器的空气流速和内部热条件,该容器受其结构和堆叠配置的影响。具体来说,检查了2×2的容器结构分解结构,其中包括一个普通的纸板箱(62×47×15 cm)和一个通过在侧壁上添加额外的通风孔(128 vs 92)进行修改的盒子;每种类型的盒子都盖有普通的纸板盖或改良的塑料家禽网格盖。用四个容器堆叠一叠来评估盒子之间的垂直距离(VD)从2.5厘米(当前使用)到17.8厘米对空气流速的影响。四个烟囱(每个烟囱六个)评估烟囱之间水平距离(HD)从5.1到15.2厘米对空气流速的影响。将NI / CR电加热丝均匀地放置在优质床上用品上方,用于模拟88个通常在每个容器中饲养的未饲喂日龄雏鸡的显热生产率(在30°C时21 W)。结果表明,在当前的箱形结构和堆放结构下,测得的通风速率(平均为0.013 L / s /小鸡或0.028 CFM /小鸡)在寒冷天气下似乎足够,但远低于中温至高温天气的建议值。一种改进的实用的容器结构和堆叠配置,其特征在于带有网格盖的常规容器主体,盒子之间的7.6厘米VD,盒子之间的5.1毫米HD(与现有的纸板间隔器相连)。改进的结构和堆叠配置的平均空气流速为0.062 L / s /小鸡。对于第1层(底层),2、3、4、5和6(顶层),容器相对于测试室温的相应内部温升分别为3.4、4.7、4.8、5.0、5.5和4.8 K,相比之下,当前的箱形结构和堆叠结构分别为5.5、8.1、9.1、9.8、9.9、7.8K。由于过高的空气流速和顶层的潜在冷风,建议将原始的纸板盖用于顶层容器。

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