Department of Agricultural Engineering, Federal University of Lavras, 37200-000, MG, Brazil.
Aviário Santo Antônio, Nepomuceno-MG, 37250-000, MG, Brazil.
J Therm Biol. 2020 Oct;93:102678. doi: 10.1016/j.jtherbio.2020.102678. Epub 2020 Sep 12.
Controlling environmental conditions inside laying hens facilities systems and their effects on physiology and performance is essential in defining management strategies to alleviate the adverse effects of thermal stress in laying hens. Thus, we estimated thermoneutral zones for laying hens exposed to different heat-challenging conditions based on environmental conditions, enthalpy, and thermal comfort indexes being evaluated out in four thermal environment-controlled wind tunnels equipped with heating and air moistening function, housed in an experimental room with an area of 31.92 m. Clustering analysis and empirical models were used to estimate thermoneutral zones for laying hens based on environmental conditions, enthalpy and thermal comfort indexes, and compare them with data available in the literature through graphics. The thermoneutral zones characterizing homeostasis for laying hens based on respiration rate (RR) are as follows: from 25.9 to 29.9 °C for air dry-bulb temperature (t), from 67 to 75 for temperature-humidity index (THI), from 68 to 73 for black globe-humidity index (BGHI), from 45 to 56 kJ kg dry air for enthalpy (H) and 441.7-465.6 W for radiant heat load (RHL). Comfort limits for physiological responses cloacal temperature (t), surface temperature (t) and RR found in this study are 39.4-39.9 °C, 26.5 to 29.9 °C and 30 to 67 mov. min, respectively. The number of repetitions and the use of mathematical modeling to be worked on, may directly impact the amplitude of each limit to be established for each variable of interest.
控制产蛋鸡设施系统内的环境条件及其对生理和性能的影响对于确定管理策略以减轻产蛋鸡热应激的不利影响至关重要。因此,我们根据环境条件、焓和热舒适度指标,在四个配备加热和空气加湿功能的热环境控制风洞中进行了评估,这些风洞位于一个面积为 31.92 m 的实验室内,估计了处于不同热挑战条件下的产蛋鸡的热中性区。聚类分析和经验模型用于根据环境条件、焓和热舒适度指标来估计产蛋鸡的热中性区,并通过图形将其与文献中的数据进行比较。基于呼吸率 (RR) 特征产蛋鸡体内平衡的热中性区如下:空气干球温度 (t) 为 25.9 至 29.9°C,温度湿度指数 (THI) 为 67 至 75,黑球湿度指数 (BGHI) 为 68 至 73,焓 (H) 为 45 至 56 kJ kg 干空气,辐射热负荷 (RHL) 为 441.7-465.6 W。本研究中发现的生理反应肛温 (t)、体表温度 (t) 和 RR 的舒适极限分别为 39.4-39.9°C、26.5 至 29.9°C 和 30 至 67 mov.min。重复的次数和使用的数学建模方法可能会直接影响为每个感兴趣变量建立的每个极限的幅度。