首页> 外文期刊>Journal of occupational and environmental hygiene >A Goal Method and a Target Method for balancing exhaust ventilation duct systems with dampers.
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A Goal Method and a Target Method for balancing exhaust ventilation duct systems with dampers.

机译:用阻尼器平衡排气通风管道系统的目标方法和目标方法。

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摘要

This work presents and discusses two approaches to adjusting dampers, here called the Goal and Target Methods. A form of the Goal Method is commonly employed but has not been clearly described or discussed elsewhere. The Target Method is a novel variation of so-called "proportional" methods. Detailed step-by-step procedures for each are presented. It is likely that the most common method of balancing the airflows in ventilation systems is simply to adjust the damper in each branch in turn until the observed airflow for each branch duct (Qbr) equals the goal airflow (Qbr-goal). This is a simple Goal Method. It is difficult and time-consuming due to interactions among branches and with the fan. As one adjusts a damper to reduce airflow in that duct, all other airflows increase. As each damper is inserted, the overall resistance of the system increases, reducing fan output. The Target Method uses target values of centerline velocity pressure (VPcl) or hood static pressure (SPh) computed from the measured values of VPcl and SPh multiplied by factors intended to account for (a) initial Qbrand Qbr-goal, (b) the interactive effects of dampers on branch airflows, and (c) a model that predicts the reduction in fan airflow due to the dampers. Simulations on a computer spreadsheet predict that the Target Method will produce better accuracy for fewer adjustments than the goal method, but it is more computationally difficult.
机译:这项工作提出并讨论了调节阻尼器的两种方法,这里称为目标方法和目标方法。目标方法的一种形式是常用的,但在其他地方没有明确描述或讨论。目标方法是所谓的“比例”方法的新颖变体。介绍了每个程序的详细分步过程。平衡通风系统中气流的最常见方法可能就是简单地依次调整每个分支中的风门,直到每个分支管道(Qbr)的观测气流等于目标气流(Qbr-goal)。这是一种简单的目标方法。由于分支之间以及与风扇之间的交互,这既困难又费时。当调节风门以减少该管道中的气流时,所有其他气流都会增加。插入每个风门后,系统的整体阻力会增加,从而降低风扇输出。目标方法使用中心线速度压力(VPcl)或发动机罩静压力(SPh)的目标值,该目标值是根据VPcl和SPh的测量值乘以以下因素得出的:(a)初始Qbrand Qbr-goal,(b)交互式阻尼器对分支气流的影响,以及(c)预测由于阻尼器而导致风扇气流减少的模型。在计算机电子表格上进行的模拟预测,与目标方法相比,目标方法通过较少的调整将产生更好的准确性,但计算难度更大。

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