Building Energy Simulation Model Application to Greenhouse Microclimate, Covering Material and Thermal Blanket Modelling: A Review

Q4 Engineering
T. D. Akpenpuun, Q. O. Ogunlowo, A. Rabiu, M. A. Adesanya, W. Na, M. Omobowale, Y. Mijinyawa, H. W. Lee
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引用次数: 4

Abstract

This review documents the present knowledge and knowledge gap in applying building energy simulation (BES) dynamic models to greenhouses. The focus of this review is to compile the literature on the BES dynamic model of greenhouse microclimate, covering materials, energy requirements and thermal blankets using the Transient System Simulation version 18 (TRNSYS 18) software. Fifty-two journal articles, mostly Science Citation Index (SCI) and Scopus index journals, on BES development and simulation of greenhouse microclimate, greenhouse energy requirement, covering materials and thermal blankets were reviewed. These researchers sought to optimise greenhouse crop production. The main features of the TRNSYS 18 software for BES development are outlined; each research consulted for this review successfully developed, simulated and validated its BES. However, none of these developed models included the vapour pressure deficit (VPD) as a greenhouse microclimate factor, an essential climate parameter. In conclusion, this study demonstrates that applying a BES developed using TRNSYS has excellent potential to optimise greenhouse crop production and help adapt appropriate climate control strategies and energy-saving techniques. However, it is recommended to include VPD in future BES model development.
建筑能量模拟模型在温室小气候、覆盖材料和保温毯建模中的应用综述
这篇综述记录了目前将建筑能源模拟(BES)动态模型应用于温室的知识和知识差距。本综述的重点是使用瞬态系统模拟版本18(TRNSYS 18)软件汇编BES温室小气候动态模型的文献,包括材料、能源需求和热毯。综述了52篇关于BES开发和模拟温室小气候、温室能源需求、覆盖材料和热毯的期刊文章,主要是科学引文索引(SCI)和Scopus索引期刊。这些研究人员试图优化温室作物生产。概述了用于BES开发的TRNSYS 18软件的主要特点;本综述中咨询的每项研究都成功地开发、模拟和验证了其BES。然而,这些开发的模型都没有将蒸汽压亏空(VPD)作为温室小气候因素,这是一个重要的气候参数。总之,本研究表明,应用使用TRNSYS开发的BES具有优化温室作物生产的巨大潜力,并有助于适应适当的气候控制策略和节能技术。然而,建议在未来的BES模型开发中包括VPD。
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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来源期刊
Nigerian Journal of Technological Development
Nigerian Journal of Technological Development Engineering-Engineering (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
40
审稿时长
24 weeks
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