STUDY ON THE MECHANISM OF INDOOR TEMPERATURE AND HUMIDITY CHANGE IN THE SUNKEN SOLAR GREENHOUSE DURING THE SMOTHERING PERIOD

IF 0.6 Q4 AGRICULTURAL ENGINEERING INMATEH-Agricultural Engineering Pub Date : 2023-04-30 DOI:10.35633/inmateh-69-20
Weiwei Cheng, Xin You, Tao Tian, Jiaxuan Lu, Junlin He, Zhouhua Liu, Fei Han
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Abstract

A sunken solar greenhouse is the original type of greenhouse in China, its soil wall thermal storage performance is better and low cost. Higher benefits of stereoscopic planting in sunken solar greenhouses, while repeated use of the substrate can produce pathogens, so high-temperature smothering is used for sterilization in the summer months of June to August. To investigate the mechanism of indoor temperature and humidity variation and fungicidal effect in a sunken solar greenhouse, a single cross-sectional test of temperature and humidity in sunken solar greenhouse during the smothering period was conducted using wireless sensors. The results showed that: The maximum value of indoor temperature at noon was 69.5°C the temperature value of all measurement points was greater than 50°C for 3h, when removing the measurement points at the upper surface of the ground, the relative humidity value of other measurement points was less than 60% for 5h. During the daytime period, when the indoor temperature is greater than 28°C in the interval 7:00-12:00, the initial relative humidity value of each measurement point is located at 70%-85%; when the weighted temperature of each measurement point starts to rise at a rate of 1.1°C/10min, the weighted humidity of each measurement point declining is 1.3%/10min; the determination of the rate of change of indoor temperature and humidity during the daytime and the starting value can provide a basis for indoor plants to take measures to sterilize at high temperature.
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下沉式日光温室窒息期室内温湿度变化机理研究
下沉式太阳能温室是我国最早的温室类型,其土壁蓄热性能较好,成本较低。在下沉式日光温室中立体种植的好处更高,而重复使用基质会产生病原体,因此在6月至8月的夏季使用高温窒息杀菌。为了研究下沉式日光温室室内温湿度变化的机理和杀菌效果,利用无线传感器对下沉式日光日光温室窒息期的温湿度进行了单截面测试。结果表明:中午室内温度最高值为69.5°C,所有测点的温度值均大于50°C达3h,当去除地面上表面的测点时,其他测点的相对湿度值均小于60%达5h。在白天,当室内温度在7:00-12:00之间大于28°C时,每个测量点的初始相对湿度值位于70%-85%;当各测点的加权温度开始以1.1°C/10min的速率上升时,各测点加权湿度下降为1.3%/10min;确定室内温度和湿度在白天的变化率和起始值,可以为室内植物采取高温杀菌措施提供依据。
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来源期刊
INMATEH-Agricultural Engineering
INMATEH-Agricultural Engineering AGRICULTURAL ENGINEERING-
CiteScore
1.30
自引率
57.10%
发文量
98
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