关于改进通风柜以实现节能和最小面速的研究

YoungJin Son, Sungmin Bae
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引用次数: 0

摘要

通风柜是将实验过程中产生的有害物质安全排出室外的设备,为了研究人员的安全和保护实验样品,进气量和排气速度之间的平衡极为重要。美国国家标准学会(ANSI)建议通风柜的面速为 0.5 米/秒(ASHRAE 110-2016)。韩国职业安全健康公司规定为 0.4 米/秒(KOSHA-G-7-1999)。为了提高通风柜的功能,通风柜必须每天 24 小时运行,同时保持规定的面速,以营造安全的实验室环境。然而,持续为通风柜供电需要消耗大量电能。因此,努力降低能耗至关重要。一些实验室已经采用了一种方法,即只在使用时才为通风柜供电,从而最大限度地减少用电量。在这种情况下,应该非常谨慎。因为防护罩内的有害物质可能会泄漏,从而危及整个实验室。通过实施这些措施,管理实验室设施的组织和机构可以有效降低能耗,同时确保使用安全的通风柜。此外,研究机构越来越倾向于将通风柜的面速保持在 0.25 米/秒以下,以减少和节约电能。本研究源于旨在实现通风柜稳定面速的初步研究。在这项研究中,为了降低通风柜的面速,我们在现有研究的基础上改变了通风柜的结构设计。因此,通风柜的面速从 0.5 米/秒降至 0.297 米/秒。为了验证最小面速通风柜的性能,我们使用国际标准测试方法对通风性能进行了测试。结果表明,面速为 0.297 米/秒的通风柜与现有面速较高的通风柜相比没有差别。此外,最小面速通风柜还能降低能耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Fume Hood Improvements for Energy Savings and Minimum Face Velocity
A fume hood is a device that safely exhausts harmful substances generated during the experimental process to the outside, and for the safety of researchers and the protection of experimental samples, the balance between the amount of air flowing in and the speed at which it is discharged to the outside is extremely important. The Face velocity of the fume hood is recommended to be 0.5m/s (ASHRAE 110-2016) specified by the American National Standards Institute (ANSI). The Korea Occupational Safety and Health Corporation specifies 0.4 m/s (KOSHA-G-7-1999). To increase the functionality of the fume hood, it must be operated 24 hours a day while maintaining the prescribed Face velocity to make a safe laboratory environment. However, constantly powering them consumes a significant amount of electrical energy. Therefore, it's crucial to make efforts to reduce energy consumption. Some labs have adopted a method to minimize electrical usage by powering the hoods only when they're in use. In that case, it should be done with great caution. Because hazardous substances inside the hood could be leaked, putting the entire lab at risk. By implementing such measures, organizations and institutions managing lab facilities can effectively reduce energy consumption while ensuring the use of safe fume hoods. Additionally, there's a growing trend in research facilities to maintain Face velocity of fume hoods below 0.25 m/s as part of efforts to decrease and conserve electrical energy. This study stems from preliminary research aimed at achieving a stable face velocity in fume hoods. In this study, to reduce the face velocity of the fume hood, we changed the structural design of the fume hood based on existing research. As a result, the face velocity of the fume hood is reduced from 0.5 m/s to 0.297 m/s. the study reduced the face velocity to a maximum of 0.297m/s. To verify the performance of the fume hood with minimum face velocity, we tested the ventilation performance with the international standard test method. It proves that the fume hood with face velocity 0.297 m/s make no differences compared to existing fume hood with higher face velocity. In addition, the fume hood with minimum face velocity enables the reduction of energy consumption.
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