储粮加压曝气系统的选型

D. C. Carvalho Lopes, A. J. Steidle Neto
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引用次数: 0

摘要

曝气被广泛用于冷却粮食,保持储存产品的物理条件,并成为采后部门在粮食安全方面最重要的做法之一。曝气系统组件的适当尺寸对于保证这种预防技术的正确操作和管理至关重要。在大多数粮食储存结构中,压力或吸入气流都可以使用,其中压力系统最受欢迎。本文讨论了储粮加压曝气系统施胶时所需的程序。提出了风机功率和风机尺寸选择的主要公式和建议,以便在曝气过程中为粮食储存提供足够的曝气气流。还展示了如何计算屋顶通风口尺寸的技术信息,以便在存储室内提供自然通风并避免屋顶下冷凝。此外,提出了一种计算曝气穿孔管道尺寸的方法,旨在使气流在此过程中在颗粒中保持适当的均匀性。文献中描述的技术和科学信息与经验规则和建议相结合,产生了一个指导方针,能够帮助学生和工程师需要大小压力颗粒曝气系统的平面和圆柱形箱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sizing of pressure aeration systems for stored grain
Aeration is widely used to cool grain, preserving the physical conditions of the stored product and appearing as one of the most important practices of the postharvest sector in terms of food security. The proper sizing of the aeration system components is essential for guaranteeing the correct operation and management of this preventive technique. Either pressure or suction airflow could be used in most grain storage structures, with pressure systems being most popular. In this article, procedures required when sizing pressure aeration systems for stored grain are discussed. The main equations and recommendations for selecting the proper fan power and size are presented, aiming at allowing to deliver the adequate aeration airflow rate for grain storage during aeration. Technical information about how to calculate the dimensions of roof vents are also showed, in order to provide natural ventilation inside the storage and avoid under-roof condensation. Additionally, a methodology for calculating the dimensions of the aeration perforated ducts is proposed, aiming at suitable uniformity of airflow in the grain mass during this process. Technical and scientific information described in the literature were integrated with empirical rules and recommendations, resulting in a guideline capable of helping students and engineers that need to size pressure grain aeration systems for flat and cylindrical bins.
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