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PID temperature controller in pig nursery: spatial characterization of thermal environment

机译:PIG托儿所PID温度控制器:热环境的空间特征

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摘要

The use of enhanced technologies of temperature control can improve the thermal conditions in environments of livestock facilities. The objective of this study was to evaluate the spatial distribution of the thermal environment variables in a pig nursery with a heating system with two temperature control technologies based on the geostatistical analysis. The following systems were evaluated: overhead electrical resistance with Proportional, Integral, and Derivative (PID) controller and overhead electrical resistance with a thermostat. We evaluated the climatic variables: dry bulb temperature (Tbs), air relative humidity (RH), temperature and humidity index (THI), and enthalpy in the winter, at 7:00, 12:00, and 18:00?h. The spatial distribution of these variables was mapped by kriging. The results showed that the resistance heating system with PID controllers improved the thermal comfort conditions in the pig nursery in the coldest hours, maintaining the spatial distribution of the air temperature more homogeneous in the pen. During the hottest weather, neither system provided comfort.
机译:使用增强技术的温度控制技术可以改善牲畜设施环境中的热条件。本研究的目的是评估猪苗中的热环境变量的空间分布,其采用具有两个温度控制技术的加热系统,基于地质统计学分析。评估以下系统:具有比例,积分和导数(PID)控制器的开销电阻和具有恒温器的架空电阻。我们评估了气候变量:干泡温度(TBS),空气相对湿度(RH),温度和湿度指数(THI),冬季焓,在7:00,12:00和18:00?H。这些变量的空间分布被Kriging映射。结果表明,具有PID控制器的电阻加热系统在最冷的时间内改善了猪苗中的热舒适条件,保持了在笔中更均匀的空气温度的空间分布。在最热门的天气期间,既不提供舒适。

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