运输断奶猪的自然通风车辆内空气温度的预测模型

IF 7.7 1区 农林科学 Q1 AGRICULTURE, MULTIDISCIPLINARY Computers and Electronics in Agriculture Pub Date : 2024-11-07 DOI:10.1016/j.compag.2024.109591
Guoxing Chen, Guoqiang Zhang, Li Rong
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引用次数: 0

摘要

在运输过程中保持适当的车内温度对动物福利和牲畜供应链的可持续发展至关重要。本研究利用计算流体动力学(CFD)研究了在较暖天气条件下运输断奶猪的多层自然通风车辆内的空气温度。根据 CFD 模拟生成的数据集,使用响应面方法学(RSM)和梯度提升机(GBM),以车外气温、车速、风速、入射风角和百叶窗开启高度为输入,建立了车内气温预测模型,并进行了验证。结果表明,RSM 建立的预测模型足以预测行驶中的自然通风畜牧车的车内温度,而 GMB 可以适度提高预测精度。RSM 模型表明,车内温度随外部气温、开口高度和风速的增加而线性上升,但对车速不敏感。GMB 模型表明,前舱的平面平均气温比同一甲板上的其他两个舱室高 2.2 °C,且气温从下层到上层略有上升。在行驶中的畜力车内观察到空气温度的空间变化很大,这给监测车内空气温度带来了挑战。所开发的模型有望预测车内空气温度,并为提前调节通风系统提供建议。还可以开展进一步的研究,探讨改善自然通风潜力的最佳开口控制。
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Predictive models of air temperatures inside a naturally ventilated vehicle transporting weaner pigs
Maintaining proper interior thermal condition during transportation is vital for animal welfare and sustainability of livestock supply chain. This study investigated the air temperatures inside a multi-deck naturally ventilated vehicle when transporting weaner pigs under warmer weather condition by using computational fluid dynamics (CFD). Predictive models of interior air temperatures were developed by using response surface methodology (RSM) and gradient boosting machine (GBM) with the inputs of exterior air temperature, vehicle speed, wind speed, incident wind angle and opening height of shutter based on the dataset generated from CFD simulations and validated as well. The results showed that predictive models developed by RSM were sufficient for predicting the interior air temperatures of moving naturally ventilated livestock vehicle, and GMB could improve the prediction accuracy moderately. RSM models indicated that the interior temperatures increased linearly with the increase in exterior air temperature, opening height and wind speed while insensitive to vehicle speed. GMB model indicated that the plane-average air temperature of front compartments was 2.2 °C higher than those of the other two compartments at the same deck, and the air temperature increased slightly from the bottom to the upper deck. High spatial variations in air temperature were observed inside the moving livestock vehicle, which poses a challenge on monitoring interior air temperatures. The developed models are expected to predict the interior air temperatures and provide suggestion on regulating ventilation systems in advance. Further study could be conducted to investigate the optimum control of opening for improving the natural ventilation potential.
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来源期刊
Computers and Electronics in Agriculture
Computers and Electronics in Agriculture 工程技术-计算机:跨学科应用
CiteScore
15.30
自引率
14.50%
发文量
800
审稿时长
62 days
期刊介绍: Computers and Electronics in Agriculture provides international coverage of advancements in computer hardware, software, electronic instrumentation, and control systems applied to agricultural challenges. Encompassing agronomy, horticulture, forestry, aquaculture, and animal farming, the journal publishes original papers, reviews, and applications notes. It explores the use of computers and electronics in plant or animal agricultural production, covering topics like agricultural soils, water, pests, controlled environments, and waste. The scope extends to on-farm post-harvest operations and relevant technologies, including artificial intelligence, sensors, machine vision, robotics, networking, and simulation modeling. Its companion journal, Smart Agricultural Technology, continues the focus on smart applications in production agriculture.
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