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Greenhouse Energy Consumption for Rose Production in Different Regions of Portugal: Importance of Set-Points Definition and Energy Used

机译:葡萄牙不同地区玫瑰生产温室能源消耗:采用设定点定义和能量的重要性

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In this work results of an energy consumption study for rose production in multi-tunnel greenhouses, located in Porto (Pedras Rubras), Marinha Grande, Dois Portos, Zambujeira, Faro, Funchal and Ponta Delgada, are presented. The greenhouse considered with a surface area of about 1 ha had galvanised steel structure and was covered with three layer co-extruded plastic films. It was equipped with a hot water heating system, natural ventilation through lateral and roof openings, shadow screens and an evaporative cooling system. A Greenhouse Climate Simulator (GCS) was used to analyse the energetic behaviour in the different regions. The GCS used monthly mean data measured over several years for solar radiation, temperature, wind speed and relative humidity. A climate generator was used to obtain the mean hourly climate data of a typical day for each month and location. As inputs the GCS requires data related with greenhouse characteristics, environmental control equipments and crop. Simulation results show the hourly trend of climatic and technological variables, such as heating, cooling power, etc. For the energy balance a static complex model was used which is based on heat and mass transfer processes. The model considers the following components: heat gains due to the heating system, heat gains due to the solar radiation, heat transfer by convection and conduction through the cover, heat losses by evapotranspiration, heat losses due to the cooling system, heat intercepted by the shadow screen and heat transfer by natural ventilation. The results show the energy consumption due to the heating system in each of the studied locations, as well the heat dissipated by the cooling system during an average year. For this study, a heating period was considered and two temperature set-points were chosen. A brief economic analysis of energy management is also presented, considering location, temperature set-point and energy source, for year-round production of cut roses in Portugal.
机译:在这项工作中,展览了位于波尔图(Pedras Rubras),Marinha Grande,Dois Portos,Zambujeira,Faro,Funchal和Ponta Delgada的Marinha Grande的高隧道生产中的能耗研究。用约1公顷的表面积考虑的温室具有镀锌钢结构,并用三层共挤出的塑料薄膜覆盖。它配备了热水加热系统,通过横向和屋顶开口,遮蔽屏和蒸发冷却系统自然通风。温室气候模拟器(GCS)用于分析不同地区的能量行为。 GCS使用每月平均数据,以多年来用于太阳辐射,温度,风速和相对湿度。使用气候发生器用于获得每个月和位置的典型日的平均每小时气候数据。由于输入,GCS需要与温室特征,环境控制设备和作物有关的数据。仿真结果表明,使用的气候和技术变量的每小时趋势,例如用于能量平衡的加热,冷却功率等。使用基于热量和传质的静态复杂模型。该模型考虑以下组件:由于加热系统导致的热量增加,由于太阳辐射而导致的热量增加,通过对流和通过盖子传导,通过蒸发蒸腾,由于冷却系统而导致的热量损失,热量拦截暗影屏幕和自然通风的热传递。结果显示了每个研究的位置中的加热系统引起的能量消耗,以及冷却系统在平均年度的散热。对于该研究,考虑了加热时段,选择了两个温度设定点。还介绍了能源管理的简要经济分析,考虑到葡萄牙全年生产切割玫瑰的全年生产的地点,温度设定点和能源。

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