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北京地区日光温室光环境模拟及分析 被引量:38
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作者 刘洪 郭文利 李慧君 《应用气象学报》 CSCD 北大核心 2008年第3期350-355,共6页
针对北京地区典型日光温室,在2003—2004年试验观测的基础上,从室内直接辐射、散射辐射及作物生长对辐射影响3个方面,进行了模拟和分析,并对地面辐射的模拟结果与实测值进行了比较验证。结果表明:绝对误差为9.41W/m2,相关系数达到0.92,... 针对北京地区典型日光温室,在2003—2004年试验观测的基础上,从室内直接辐射、散射辐射及作物生长对辐射影响3个方面,进行了模拟和分析,并对地面辐射的模拟结果与实测值进行了比较验证。结果表明:绝对误差为9.41W/m2,相关系数达到0.92,与实测值、文献资料相比,模拟结果的准确性和趋势有较好的一致性,对优化温室环境控制方案具有一定的参考价值。 展开更多
关键词 日光温室模型 辐射分布 作物生长
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温室作物生长对地面辐射的影响
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作者 刘洪 郭文利 +2 位作者 孙忠富 高燕虎 权维俊 《中国农业气象》 CSCD 2010年第S1期48-52,共5页
针对北京地区常见日光温室,在建立辐射和作物生长模拟模型的基础上,分析叶面积指数变化对地面辐射的影响,并对模拟结果与实测值进行了比较验证。结果显示:叶面积指数达到3.5以上时,约90%辐射量被作物层吸收或反射;模拟值与实际值的平均... 针对北京地区常见日光温室,在建立辐射和作物生长模拟模型的基础上,分析叶面积指数变化对地面辐射的影响,并对模拟结果与实测值进行了比较验证。结果显示:叶面积指数达到3.5以上时,约90%辐射量被作物层吸收或反射;模拟值与实际值的平均绝对误差为22.17W.m-2,相关系数约为0.92;基于辐射模型和作物模型对地面辐射量动态变化进行模拟,具有较好的可行性。 展开更多
关键词 日光温室模型 辐射分布 作物生长
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Construction of Cucumber Powdery Mildew Early Warning System in Solar Greenhouse Based on Internet of Things 被引量:1
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作者 吕雄杰 王晓蓉 贾宝红 《Agricultural Science & Technology》 CAS 2016年第12期2873-2876,2884,共5页
ln order to explore the design and construction of cucumber powdery mildew warning system in solar greenhouse, internet of things technology was used to conduct the real-time dynamic monitoring of the incidence of cuc... ln order to explore the design and construction of cucumber powdery mildew warning system in solar greenhouse, internet of things technology was used to conduct the real-time dynamic monitoring of the incidence of cucumber powdery mildew and cucumber growth environment in solar greenhouse. The growth environ-ment included temperature and humidity of air and soil. Logistic regression model was used to construct cucumber powdery mildew warning model. The results showed that humidity characteristic variable (maximum air humidity) and temperature characteristic variable (maximum air temperature) had significant effects on the inci-dence probability of cucumber powdery mildew in solar greenhouse. And it was fea-sible to construct cucumber powdery mildew warning system in solar greenhouse with internet of things. 展开更多
关键词 Solar Greenhouse CUCUMBER Powdery Mildew lnternet of Things Warning Model
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Studies on Forecast Model of Photosynthetic Active Radiation in Sunlight Greenhouse in Winter in Panjin
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作者 张美玲 陈龙 +2 位作者 辛明月 徐卓 李俊和 《Agricultural Science & Technology》 CAS 2015年第2期214-218,共5页
In order to explore the law of photosynthetic active radiation in winter sunlight greenhouse in Panjin and serve the local facility agriculture better,based on the observed data of sunlight greenhouse microclimate and... In order to explore the law of photosynthetic active radiation in winter sunlight greenhouse in Panjin and serve the local facility agriculture better,based on the observed data of sunlight greenhouse microclimate and of the nearby weather station during winter in 2012,the methods of correlation analysis and stepwise regression analysis were adopted to study characteristics of photosynthetic active radiation in sunlight greenhouse and the ratio of photosynthetic active radiation to global radiation under different weather types during winter,and to set up forecast models of photosynthetic active radiation in sunlight greenhouse under different weather types during winter.The results showed that:(1) the daily variation of photosynthetic active radiation in sunlight greenhouse on sunny and cloudy days were both obvious,and photosynthetic active radiation in sunlight greenhouse was 1-38 W/m^2 when it's cloudy.(2) ηPARon typical cloudy day was the highest,on cloudy day was secondary and on sunny day was the minimum during winter;(3) the methods of stepwise regression analysis were respectively adopted to set up models of the highest daily maximum photosynthetic active radiation,the total daily photosynthetic active radiation,daily maximum global radiation,and the total daily global radiation in sunlight greenhouse associated with climate outside,the models passed the 0.01 level of significance,and fitting test had been carried out:4 factors were fitted well on sunny and cloudy day,but fitted poor on overcast day. 展开更多
关键词 Sunlight greenhouse Photosynthetic active radiation MODEL Panjin
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