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Ventilation rate, Balance Temperature and Supplemental Heat Need in Alternative vs. Conventional Laying-Hen Housing Systems

机译:替代与常规铺设母鸡外壳系统的通风率,平衡温度和补充热需求

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An Excel-based spreadsheet model was developed to delineate ventilation rate (VR), supplemental heat requirement (H_s), balance temperature (t_(bal), outdoor temperature below which H_s is required), energy consumption and cost for H_s in alternative(aviary and enriched colony) versus conventional cage laying-hen housing systems. The model was then applied to the Midwestern U.S. housing characteristics at winter weather conditions (-30°C to 5°C temperature, 70% RH). Effects of stocking density, target house temperature and RH (t_(in) RH_i), building insulation level, and light vs. dark period on VR, t_(bal)and H_s were examined. For the housing characteristics considered, t_(bal), for the alternative housing systems was found to be 2.5°C to 3.7°C higher than that for the conventional cage counterpart to maintain the houses at 25°C t, and 60% RH_i,. The heater capability needs to be at least 26.6 to 28.4 kW per 10,000 birds for the aviary houses (107,000-bird capacity), and 22.7 kW per 10,000birds for the enriched colony house (124,000-bird capacity). Annual H_s use was estimated to be 0.17 to 0.25 MJ [kg eggj1 in the alternative houses. Among the influencing factors considered, f, and RH, setpoints have more pronounced impact on t_(bal) andH_s than other factors. The H_s energy cost for the alternative housing systems in the Midwestern US was shown to account for less than 0.5% of the total production cost. The interactive model can be readily used for analysis of other production and climatic conditions.
机译:基于Excel的电子表格模型开发为描绘通风速率(VR),补充热量要求(H_S),平衡温度(T_(BAL),户外温度以下,替代地区的H_S的能耗和成本(鸟类)并丰富的殖民地)与传统的笼子铺设母鸡外壳系统。然后将该模型应用于冬季天气条件(-30°C至5°C温度,70%RH)时将该模型应用于中西部的壳体特性。检查了载体密度,目标房屋温度和RH(T_(IN)RH_I),建筑物绝缘水平和光与VR,T_(BAL)和HMS的暗时期的影响。对于所考虑的壳体特性,对于替代住房系统的T_(BAL)被发现为2.5°C至3.7°C,比传统的笼子对应物保持在25°C T和60%RH_I, 。加热器能力需要每10,000只鸟类(107,000鸟容量)的每10,000只鸟类的至少26.6至28.4千瓦,而丰富的殖民地房屋(124,000鸟容量)为每10,000鸟22.7千瓦。每年的H_S使用估计为0.17至0.25 MJ [kg eggj1在替代房屋中。在考虑的影响因素中,F和RH,设定值对T_(BAL)和H_S的影响更加明显,而不是其他因素。美国中西部替代住房系统的H_S能源成本显示,占生产总成本的占生产率的0.5%。交互式模型可以容易地用于分析其他生产和气候条件。

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