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BES computation for periodical energy load of greenhouse with geothermal heating system.

机译:利用地热供暖系统的温室定期能源负荷的BES计算。

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Greenhouse requires a lot of energy cost to maintain internal environmental conditions suitable for crops. The applications of renewable energies in the greenhouse have been concerned to reduce energy cost comparing to the fossil fuel consumption. For the optimum operation of heating system combining renewable energy and fossil fuel, heating and cooling load should be quantitatively investigated according system characteristics. Building energy simulation (BES) is a promising simulation tool to calculate real-time energy load considering time-dependently changed external weather conditions. The objective of this research is to calculate real-time energy load of an experimental greenhouse located in Namwon, Jeollabuk-do, Korea installing geothermal heating system. The greenhouse was a seventeen multi-span Venlo-type with 6.4 m width and 93 m length growing paprika, the heating and cooling loads were computed by TRNSYS (version 16, Wisconsin, USA) software at the same configuration and operating conditions. To validate the developed BES model, the energy load of the greenhouse computed by BES was additionally compared with diesel consumption resulting in a good agreement. Then the energy load was computed by the BES model when the greenhouse system was upgraded with the geothermal heating system with 240 RT (refrigeration-ton) heat pumps. The results showed a decrease of operating cost including electricity and diesel by 80% comparing to the greenhouse without geothermal system. Computational fluid dynamics (CFD) was also used to analyze internal thermal condition in the greenhouse using geothermal energy through various types of heating systems and circulation fans. The thermal uniformity could be improved by 42.4% using heating pipe and by 81% using both heating pipe and circulation fans.CT International Symposium on New Technologies for Environment Control, Energy-Saving and Crop Production in Greenhouse and Plant Factory - Greensys 2013, Jeju, Korea Republic, 22-27 September 2013.
机译:温室需要大量的能源成本才能维持适合作物的内部环境条件。与化石燃料消耗相比,已经关注可再生能源在温室中的应用以降低能源成本。为了使可再生能源和化石燃料相结合的加热系统最佳运行,应根据系统特性定量研究加热和冷却负荷。建筑能耗模拟(BES)是一种有前途的模拟工具,可以考虑随时间变化的外部天气条件来计算实时能源负荷。这项研究的目的是计算位于韩国全罗北道南原市安装地热供暖系统的实验温室的实时能源负荷。温室是17个多跨式Venlo型,宽度为6.4 m,长度为93 m,生长的辣椒粉,在相同的配置和操作条件下,通过TRNSYS(美国威斯康星州第16版)软件计算了加热和冷却负荷。为了验证已开发的BES模型,将BES计算的温室能源负荷与柴油消耗进行了比较,得出了很好的一致性。然后,当温室系统升级为带有240 RT(制冷吨)热泵的地热供暖系统时,通过BES模型计算能量负荷。结果表明,与没有地热系统的温室相比,包括电力和柴油在内的运营成本降低了80%。计算流体动力学(CFD)还用于通过各种加热系统和循环风扇利用地热来分析温室中的内部热状况。使用加热管可将热均匀性提高42.4%,使用加热管和循环风扇可将热均匀性提高81%。CT国际温室和植物工厂环境控制,节能和作物生产新技术研讨会-Greensys 2013,济州,大韩民国,2013年9月22日至27日。

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