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Thermal energy use for dehumidification of a tomato greenhouse by natural ventilation and a system with an air-to-air heat exchanger

机译:通过自然通风将热能用于番茄温室除湿以及具有空气-空气热交换器的系统

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The aim of the study was to estimate the amount of thermal energy used for dehumidification of a naturally ventilated tomato greenhouse and to estimate how mechanical ventilation with the use of a heat exchanger recovering heat from the exhaust to the supply air may decrease the energy use. Measured use of thermal energy in a naturally ventilated tomato greenhouse was compared to modelled values using Powersim?? software. By the help of the model an estimation of the amount of energy used for dehumidification was made for the months April - September. A non-hygroscopic rotary air-to-air heat exchanger was studied, and its temperature and moisture efficiencies were measured. Modelling for leaf area index (LAI) 3.5 and 4.0 m2 m-2 indicated that 23 and 29% of the total thermal energy was used for moisture removal respectively. Modelling for the heat exchanger indicated thermal energy savings of 15 and 17% for the same LAI respectively.
机译:该研究的目的是估计用于自然通风的番茄温室除湿的热能量,并估计使用热交换器将排气中的热量回收到供应空气中的机械通风如何减少能耗。使用Powersim™将在自然通风的番茄温室中测得的热能利用与建模值进行比较。软件。借助该模型,估算了4月至9月的除湿能耗。研究了一种非吸湿旋转式空气-空气热交换器,并测量了其温度和湿度效率。叶面积指数(LAI)为3.5和4.0 m2 m-2的模型表明,分别将总热能的23%和29%用于除湿。换热器的模型表明,相同的LAI分别可节省15%和17%的热能。

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