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Abstract

<jats:p>The paper describes a staged construction and application of an experimentally analytical model for determining the thermal characteristics of container greenhouses; develops an automatic system for registering microclimate parameters based on Arduino; performs an analysis of experimental data collected by the automated measuring and storage system regarding air temperatures and humidity during the autumn-spring observation period. A mathematical model of a container greenhouse has been developed and tested, allowing determining the thermal characteristics of the observed object under temperature conditions unavailable at the experiment location. The study demonstrates the effectiveness of using an experimentally analytical mathematical model at the design stage of container greenhouses to account for climatic features of the location and thermal insulation capabilities of the materials used.</jats:p>

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Keywords

model thermal container experimentally analytical

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