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首页> 外文期刊>ASHRAE Transactions >Reducing Sidewall Vent Plumes and Increasing Equipment Installation Flexibility in Low Energy Design
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Reducing Sidewall Vent Plumes and Increasing Equipment Installation Flexibility in Low Energy Design

机译:在低能耗设计中减少侧壁排气孔并增加设备安装的灵活性

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High-efficiency natural gas-fired space and water heating systems are an integral part of Low Energy Design, offering equipment installation flexibility at minimum operating cost. These systems are largely installed with sidewall vents in new and retrofit single family and multifamily buildings when venting through the roof is not practical, is prohibited by local code, or is beyond the maximum length of the vent system permitted by the manufacturers' installation instructions. The industry continues to investigate sidewall venting systems design and installation practices to improve building design flexibility, improve vent performance under extreme conditions, avoid nuisance outages, and avoid other occurrences such as ice formation on nearby structures. This paper investigates sidewall vent plume formation and the potential for ice formation on nearby structures in very cold climates. A review of the literature on turbulent buoyant round jet formation and transition from momentum-driven to buoyancy-driven flow is discussed as well as results of computational fluid dynamics (CFD) modeling of several geometries. CFD is a finite difference model that calculates the fluid parameters based on the physics of the fluid flow and surrounding conditions. Recommendations are made for improving sidewall vent performance and supporting flexible Low Energy Design practices.
机译:高效的天然气空间和热水系统是低能耗设计的组成部分,以最小的运营成本提供设备安装灵活性。当通过屋顶通风不可行,当地法规禁止或超出制造商安装说明允许的最大通风系统长度时,这些系统将在新的和改造的单户和多户房屋中安装侧壁通风口。业界一直在研究侧壁通风系统的设计和安装方法,以提高建筑设计的灵活性,在极端条件下提高通风性能,避免造成麻烦的中断,并避免其他事件发生,例如附近建筑物上结冰。本文研究了在非常寒冷的气候条件下侧壁通风孔羽流的形成以及附近结构的结冰可能性。讨论了有关湍流浮力圆形射流形成和从动量驱动流转换为浮力驱动流的文献综述,以及几种几何的计算流体动力学(CFD)建模结果。 CFD是一种有限差分模型,可基于流体流动和周围环境的物理条件来计算流体参数。提出了改善侧壁通风口性能并支持灵活的低能耗设计实践的建议。

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