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首页> 外文期刊>Biosystems Engineering >Modelling of ammonia emissions from naturally ventilated livestock buildings: Part 2, air change modelling. (Special Issue: Emissions from naturally ventilated livestock buildings.)
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Modelling of ammonia emissions from naturally ventilated livestock buildings: Part 2, air change modelling. (Special Issue: Emissions from naturally ventilated livestock buildings.)

机译:自然通风的牲畜建筑物氨气排放的建模:第2部分,空气变化建模。 (特刊:自然通风的牲畜建筑物的排放。)

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摘要

This review shows the theoretical background for development of lumped ventilation models that can be integrated into models that aim to aid either design or operation of low emission naturally-ventilated buildings. The strength of lumped parameter modelling methods is that they have the potential to include effects of varying outdoor climate conditions, varying heat production from animals and the building design, which allow estimation of ventilation rate and indoor air temperature and humidity, with acceptable calculation times. With regard to design of low emission buildings, significant challenges still exist in reflecting the spatial distribution of ammonia emission surfaces and the influence of air velocity above these surfaces. In relation to operation of natural ventilation systems, it is obvious that lumped parameter methods have the potential to aid automatic control systems that aim to optimise the adjustment of automatically controlled openings for natural ventilation in a way that prevents over-ventilation and, thereby, minimises ammonia emission, without compromising indoor aerial conditions. It is also foreseen that lumped parameter methods have the potential to optimise opening adjustment and exhaust strategies in hybrid ventilation systems. In these contexts, ventilation is can be combined with a partial pit exhaust ventilation system which makes it possible to collect a significant fraction of the entire ammonia emission in a limited air stream. This may make it affordable to utilise air cleaning technologies in conjunction with naturally ventilated animal buildings.
机译:这篇综述显示了集总通风模型开发的理论背景,该模型可以集成到旨在帮助设计或运营低排放自然通风建筑物的模型中。集总参数建模方法的优势在于,它们有可能包括变化的室外气候条件,动物和建筑物设计产生的热量变化的影响,从而可以在可接受的计算时间内估算通风率以及室内空气温度和湿度。关于低排放建筑物的设计,在反映氨排放表面的空间分布以及这些表面上方的空气速度的影响方面仍然存在重大挑战。关于自然通风系统的运行,很明显,集总参数方法有可能帮助自动控制系统,该系统旨在以防止过度通风的方式优化自然通风的自动控制开口的调节,从而最大程度地减少通风氨气排放,而不影响室内空气条件。还可以预见,集总参数方法有可能优化混合通风系统中的开度调节和排气策略。在这些情况下,可以将通风与局部坑式排风系统结合使用,该系统可以在有限的气流中收集大部分氨气排放。这可以使其与自然通风的动物建筑物结合使用空气净化技术可负担得起。

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