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作 者:李晓凯 塔娜[1] 闫彩霞 宋财柱[1] 郭梦杰 LI Xiaokai;Tana;YAN Caixia;SONG Caizhu;GUO Mengjie(College of Mechanical and Electrical Engineering,Inner Mongolia Agricultural University,Hohhot 010018,China;College of Energy and Transportation Engineering,Inner Mongolia Agricultural University,Hohhot 010018,China)
机构地区:[1]内蒙古农业大学机电工程学院,呼和浩特010018 [2]内蒙古农业大学能源与交通工程学院,呼和浩特010018
出 处:《中国农业科技导报》2024年第12期187-200,共14页Journal of Agricultural Science and Technology
基 金:内蒙古自治区直属高校基本科研业务费项目(BR22-14-03);国家自然科学基金项目(61663038)。
摘 要:为研究寒冷干旱地区日光温室开启顶部通风口通风方式对室内温湿度及二氧化碳水平的影响,采用RS-485总线方式搭建温室环境监测系统,对通风时段温室内距地面20、80和180 cm处的温湿度及二氧化碳含量数据进行采集和分析。在此基础上利用最小二乘法建立通风前后温室20 cm高度作物区温湿度及二氧化碳含量回归模型与通风0.5 h室内温湿度及二氧化碳含量变化回归模型。结果表明,14:30前关闭通风口可使室内温度回升,开启顶部通风口通风使室内温度、相对湿度和二氧化碳含量接近室外;通风前后温室内不同位置的环境因子分布是非均匀的,温度最大相差11.6℃,相对湿度最大相差11.8%,二氧化碳含量最大相差68μmol·mol^(-1);回归模型决定系数均在0.567以上,表明各模型中自变量与因变量具有一定的相关性,可通过少数传感器的数据估算温室20 cm高度作物区及通风0.5 h室内温湿度及二氧化碳含量。以上研究结果为北方寒旱地区日光温室环境因子精准调控提供一定的理论依据与技术参考。In order to study the influence of the indoor temperature,humidity and carbon dioxide level in a solar greenhouse in cold and arid areas under the ventilation mode of opening the top vent on,the environmental monitoring system of the greenhouse was built by means of RS-485,and the data of temperature,humidity and carbon dioxide content at 20,80 and 180 cm above the ground in the greenhouse during the ventilation period were collected and analyzed.On this basis,the least square method was used to establish the regression model of temperature,humidity and carbon dioxide content in the crop area at 20 cm height above the ground before and after ventilation,and the regression model of indoor temperature,humidity and carbon dioxide content change after ventilation for 0.5 h.The results showed that closing the vent before 14:30 could make the indoor temperature rise again,opening the top vent ventilation made the indoor temperature,relative humidity and carbon dioxide content close to the outdoor.The distribution of environmental factors in different positions in the greenhouse before and after ventilation was non-uniform,with the maximum difference of temperature 11.6℃,relative humidity 11.8% and carbon dioxide content 68μmol·mol^(-1).The coefficients of determination of the regression models were above 0.567,indicating that the independent variables in each model had a certain correlation with the dependent variables.It was possible to estimate the temperature,humidity and carbon dioxide content in the crop area at 20 cm height above the ground and the temperature,humidity and carbon dioxide content change after ventilation for 0.5 h through the data of a few sensors.Above results provided theoretical basis and technical reference for precise control of environmental factors of solar greenhouse in the northern cold and dry areas.
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