Effect of Latent Heat Phenomena on Thermal Insulation and Inside Climate of Greenhouses

J. Pieters, J. Deltour
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引用次数: 5

Abstract

By means of a dynamic greenhouse climate model, it was shown that condensation highly alters the thermal insulation properties (from +25% to -17%) of greenhouse cladding materials, depending on the far-infrared radiation transmittance of the dry material. Neglect of condensation and evaporation gave rise to an overestimation of the yearly mean inside air relative humidity of about 10% for most materials and to overestimates or underestimates of the vegetation temperature, according to the cladding's far-infrared radiation transmittance. The relative contri bution of condensation to the nighttime water vapor removal from the inside air was found to range from 79 to 89%.
潜热现象对温室保温及室内气候的影响
通过动态温室气候模型,研究表明,冷凝对温室包层材料的隔热性能(从+25%到-17%)的影响很大,这取决于干燥材料的远红外辐射透过率。根据包层的远红外辐射透过率,忽略冷凝和蒸发会导致对大多数材料的年平均室内空气相对湿度高估约10%,对植被温度高估或低估。研究发现,凝结对夜间室内空气中水蒸气去除的相对贡献在79%到89%之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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