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Design process and equipment selection for auxiliary ventilation systems

机译:用于辅助通风系统的设计工艺和设备选择

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The design of auxiliary ventilation system(AVS) and optimal equipment selection can be a problem, especially in case of very long drivages and high rock temperature. Algorithms for calculation of AVS parameters are basically developed by use of essential relationships from fluid mechanics. In a leaky duct, in addition to the variation of pressure, the flow rate varies along the duct and calculations are not straightforward. In the paper some of most successful models have been generalized and algorithms for calculations presented. Two basic models of leaking ducts are discussed: 1st model for a duct with leakage through the flange joints; 2nd model for a duct with an equivalent longitudinal aperture. The presented analytical system has been successfully applied to developing a computer program, named DAVentS. A sample problems are used to illustrate the efficiency and accuracy of DAVentS software in solving most common problems in the process of designing AVS and especially in the process of equipment selection.
机译:辅助通风系统(AVS)和最佳设备选择的设计可能是一个问题,特别是在非常长的驱动和高岩石温度的情况下。用于计算AVS参数的算法基本上通过使用来自流体力学的基本关系而开发。在泄漏管道中,除了压力的变化之外,流速沿着管道而变化,计算并不直接。在论文中,一些最成功的模型已经是概括的和计算的算法。讨论了两种泄漏管道的基本模型:第一个模型用于通过法兰接头泄漏的管道;具有等效纵向孔径的管道的第二模型。呈现的分析系统已成功应用于开发一个名为Davents的计算机程序。样本问题用于说明戴维特软件在解决AVS过程中最常见问题的效率和准确性,尤其是在设备选择过程中。

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