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Numerical modeling and simulation of pitched and curved-roof solar greenhouses provided with internal heating systems for different ambient conditions

机译:具有不同环境条件的内部加热系统的倾斜和弯曲屋顶太阳能温室的数值建模与仿真

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During the past few years, the plant nursery sector has drastically minimized its carbon footprint by using geothermal systems for heating rather than fossil fuel. This study aims to define the temperature range inside a greenhouse by means of a multiparametric analysis, with regard to several inner and external conditions imposed. In detail, it has been used the Finite Element Method (FEM), contained in the modules for the thermal analysis of the COMSOL Multiphysics (CM) software. The greenhouse structures considered are the most common in the north of Italy and Europe. Through the development of a stationary study, it has been possible to choose the suitable design solution for the heating standard required for both the floriculture and the horticulture. A 2D study of the transitory has been implemented with the intent to consider as influential factors the irradiation and the daily temperature throughout the year. The temperature trend over horizontal direction is investigated to detect any non-uniformity on the temperature distribution to which floriculture and horticulture plants are exposed. This study aims to be a starting point for the development of a system to be exploited during the design phase of these kind of greenhouses, to enhance the functioning relatively to inner and external conditions fluctuations, maximizing the thermal performance.
机译:在过去几年中,植物苗圃部门通过使用地热系统来加热而不是化石燃料,造成巨大地减少了碳足迹。本研究旨在通过多级和外部条件来定义温室内温度范围的温度范围。详细地,已经使用了包含在模块中的有限元方法(FEM),用于COMSOL多体学(CM)软件的热分析。考虑的温室结构是意大利和欧洲北部最常见的。通过开发静止研究,已经可以为花卉和园艺所需的加热标准选择合适的设计解决方案。已经实施了对暂时性的2D研究,其中目的是考虑辐照和每年的日常温度的影响因素。研究了水平方向上的温度趋势,以检测花卉和园艺植物暴露的温度分布的任何不均匀性。本研究旨在成为在这些温室的设计阶段开发系统的起点,以增强相对内部和外部条件波动的功能,最大化热性能。

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