Norton Tomás, Sun Da-Wen, Grant Jim, Fallon Richard, Dodd Vincent
Food Refrigeration and Computerised Food Technology Research (FRCFT) Group, Biosystems Engineering, National University of Ireland, University College Dublin, Earlsfort Terrace, Dublin 2, Ireland.
Bioresour Technol. 2007 Sep;98(12):2386-414. doi: 10.1016/j.biortech.2006.11.025. Epub 2007 Jan 5.
The application of computational fluid dynamics (CFD) in the agricultural industry is becoming ever more important. Over the years, the versatility, accuracy and user-friendliness offered by CFD has led to its increased take-up by the agricultural engineering community. Now CFD is regularly employed to solve environmental problems of greenhouses and animal production facilities. However, due to a combination of increased computer efficacy and advanced numerical techniques, the realism of these simulations has only been enhanced in recent years. This study provides a state-of-the-art review of CFD, its current applications in the design of ventilation systems for agricultural production systems, and the outstanding challenging issues that confront CFD modellers. The current status of greenhouse CFD modelling was found to be at a higher standard than that of animal housing, owing to the incorporation of user-defined routines that simulate crop biological responses as a function of local environmental conditions. Nevertheless, the most recent animal housing simulations have addressed this issue and in turn have become more physically realistic.
计算流体动力学(CFD)在农业领域的应用正变得越来越重要。多年来,CFD所具备的多功能性、准确性和用户友好性促使农业工程界对其采用率不断提高。如今,CFD经常被用于解决温室和动物生产设施的环境问题。然而,由于计算机效能的提高和先进数值技术的结合,这些模拟的逼真度直到近年来才得到提升。本研究对CFD、其在农业生产系统通风系统设计中的当前应用以及CFD建模人员面临的突出挑战性问题进行了最新综述。由于纳入了根据当地环境条件模拟作物生物反应的用户定义程序,温室CFD建模的现状被认为比动物饲养场的更高标准。尽管如此,最新的动物饲养场模拟已经解决了这个问题,相应地也变得更加符合物理实际。