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Methodology to quantify leaks in aerosol sampling system components

机译:量化气溶胶采样系统组件中泄漏的方法

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摘要

Filter holders and continuous air monitors (CAMs) are used extensively in the nuclear industry. It is important to minimize leakage in these devices and in recognition of this consideration, a limit on leakage for sampling systems is specified in ANSI/HPS N13.1-1999; however the protocol given in the standard is really germane to measurement of significant leakage, e.g., several percent of the sampling flow rate. In the present study, a technique for quantifying leakage was developed and that approach was used to measure the sealing integrity of a CAM and two kinds of filter holders. The methodology involves use of sulfur hexafluoride as a tracer gas with the device being tested operated under dynamic flow conditions. The leak rates in these devices were determined in the pressure range from 2.49 kPa (10 In. H2O) vacuum to 2.49 kPa (10 In. H2O) pressure at a typical flow rate of 56.6 L/min (2 cfm). For the two filter holders, the leak rates were less than 0.007% of the nominal flow rate. The leak rate in the CAM was less than 0.2% of the nominal flow rate. These values are well within the limit prescribed in the ANSI standard, which is 5% of the nominal flow rate. Therefore the limit listed in the ANSI standard should be reconsidered as lower values can be achieved, and the methodology presented herein can be used to quantify lower leakage values in sample collectors and analyzers. A theoretical analysis was also done to determine the nature of flow through the leaks and the amount of flow contribution by the different possible mechanisms of flow through leaks.
机译:过滤器支架和连续空气监测器(CAM)在核工业中得到广泛使用。重要的是要使这些设备中的泄漏最小化,并且考虑到这一点,ANSI / HPS N13.1-1999规定了采样系统泄漏的限制。但是,该标准中给出的协议实际上与测量重大泄漏(例如采样流量的百分之几)密切相关。在本研究中,开发了一种量化泄漏的技术,该方法用于测量CAM和两种过滤器支架的密封完整性。该方法论涉及使用六氟化硫作为示踪气体,被测设备在动态流动条件下运行。这些设备的泄漏率是在压力为2.49 kPa(10 In。H2O)到2.49 kPa(10 In。H2O)的压力范围内确定的,典型流量为56.6 L / min(2 cfm)。对于两个过滤器支架,泄漏率小于标称流量的0.007%。 CAM中的泄漏率小于标称流速的0.2%。这些值完全在ANSI标准规定的限值之内,该限值是标称流量的5%。因此,应该重新考虑ANSI标准中列出的限值,因为可以实现更低的值,并且本文介绍的方法可以用于量化样品收集器和分析仪中的更低泄漏值。还进行了理论分析,以确定通过泄漏的流量的性质以及通过泄漏的不同可能机制产生的流量贡献量。

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