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EVALUATING HOW THE TEMPERATURE CHANGES IN A SUNKEN SOLAR GREENHOUSE

机译:评估下沉式日光温室的温度变化

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摘要

An increasing amount of sunlight is available to sunken greenhouses located in northern China, but it remains unclear how the indoor temperature changes at different heights and at the north and south ends of the structure. To study how the temperature in a single indoor section, at multiple points, varies in a sunken solar greenhouse, 10 measurement lines were arranged in a section 30 m from the west wall. Each line was equipped with a corresponding WT-59 wireless sensor. Temperature and humidity data were collected from 8 March 2019 to 26 December 2019. The following results were obtained. (1) The indoor temperature variation in a day could be divided into four stages: from 0: 00 to 7:30 h, the temperature at all measurement points decreased linearly; from 7:30 to 14:30 h, the temperature at all measurement points increased curvilinearly; from 14:30 to 18:00, the temperature at all measurement points decreased curvilinearly; and from 18:30 to 24:00, the temperature at all measurements points decreased linearly. (2) The maximum temperature on sunny days in the greenhouse was higher than that on cloudy days and snowy days, but the maximum temperature on cloudy days and snowy days in the greenhouse occurred 3 h earlier than on sunny days. (3) The lowest average temperature of a sunken solar greenhouse over 3-6 months was 7.5 degrees C, without heating. The research results provide theoretical and reference data on how the temperature changes in the interior of a solar greenhouse and inform about the three-dimensional planting height and ventilation times.
机译:位于中国北方的下沉式温室可以获得越来越多的阳光,但目前尚不清楚不同高度和结构南北两端的室内温度如何变化。为了研究下沉式日光温室中单个室内部分在多个点的温度如何变化,在距离西墙 30 m 的部分布置了 10 条测量线。每条生产线都配备了相应的WT-59无线传感器。温度和湿度数据收集时间为2019年3月8日至2019年12月26日。获得以下结果。(1)一天内室内温度变化可分为4个阶段:0:00-7:30 h,各测点温度呈线性下降;7:30—14:30 h,各测点温度呈曲线上升;14:30—18:00,各测点温度呈曲线下降;18:30—24:00,各测量点温度呈线性下降。(2)温室晴天最高气温高于阴天和雪天,但云天和下雪天的最高气温比晴天早3 h。(3)下沉式日光温室3-6个月最低平均温度为7.5°C,不加热。研究结果为日光温室内部温度变化提供了理论和参考数据,并提供了三维种植高度和通风时间的信息。

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