NOISE ANALYSIS AND REDUCTION METHODS IN SANITATION FACILITIES AND EQUIPMENT

Galyna Kalda, Tomasz Paździorny, Katarzyna Pietrucha-Urbanik
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Abstract

The article presents an analysis of noise in sanitary devices, and the described methods of reducing noise in places where noise occurs. The given results of noise tests of sanitary facilities and workplaces concerns one of the municipal company. Described sources of noise in water supply, sewage as well as ventilation and air conditioning systems. It has been shown that the noises occurring in residential buildings may be caused by excessively high pressure inside the installation, where, for example, when closing the valve, a water hammer phenomenon arises, causing audible noises, especially when the installation is made of metal materials. The article analyzes noise in sanitary facilities, describes the methods of reducing noise in places where noise occurs. The given results of noise tests of sanitary facilities and workplaces in one of the municipal companies of the city of the Subcarpathian province. Described sources of noise in water supply, sewage as well as ventilation and air conditioning systems. It has been shown that the noises occurring in residential buildings may be caused by excessively high pressure inside the installation, where, for example, when closing the valve, a water hammer phenomenon arises, causing audible noises, especially when the installation is made of metal materials. It has been shown that the main causes of noise in plumbing systems can be rigid pipe fittings. Noises in the sewage system are related to the outflow of used water in vertical and horizontal sections. The phenomenon most often occurs in places connecting vertical pipes with horizontal pipes, as well as the use of too small diameters of pipes. Material noise reduction in sewage systems can be ensured thanks to a properly designed system of fastening pipes to fixed elements. An important step is to use appropriate sound insulation to stop unwanted sounds. The reason for noise in the air-conditioning and ventilation system are changes in the velocity of the flowing air mass and the occurrence of turbulences during the change of the air flow direction. This causes the ducts to resonate and the air flow noise through the diffusers. The most common noise problem in the central heating installation is the use of a solid fuel boiler, the maintenance work of the device is a problem, as it requires cleaning the furnace, which is related to the noise that is transmitted through the installation pipes to the rooms. Based on the analysis of workstations at the municipal company plant, it has been shown that the highest conformity deviation level is in the drying room in the position of a machine and device operator
卫生设施和设备的噪声分析和降低方法
本文对卫生设备中的噪声进行了分析,并介绍了噪声产生场所的降噪方法。卫生设施和工作场所的噪声测试结果涉及一家市政公司。描述供水、污水、通风和空调系统的噪声源。有研究表明,住宅建筑中产生的噪音可能是由装置内部压力过高引起的,例如,在关闭阀门时,会产生水锤现象,引起可听到的噪音,特别是当装置由金属材料制成时。本文对卫生设施中的噪声进行了分析,阐述了噪声产生场所的降噪方法。苏喀尔巴阡省某市政公司对卫生设施和工作场所进行的噪声测试结果。描述供水、污水、通风和空调系统的噪声源。有研究表明,住宅建筑中产生的噪音可能是由装置内部压力过高引起的,例如,在关闭阀门时,会产生水锤现象,引起可听到的噪音,特别是当装置由金属材料制成时。研究表明,管道系统中产生噪音的主要原因可能是刚性管件。污水系统中的噪声与污水在垂直段和水平段的流出有关。这种现象最常发生在垂直管道与水平管道连接的地方,以及管道直径过小的地方。通过将管道固定在固定元件上的合理设计,可以确保污水处理系统中的材料噪声降低。一个重要的步骤是使用适当的隔音来阻止不需要的声音。空调通风系统产生噪声的原因是流动气团速度的变化和气流方向变化过程中湍流的发生。这导致管道共振和气流噪声通过扩散器。集中供暖安装中最常见的噪声问题是使用固体燃料锅炉,设备的维护工作是一个问题,因为它需要清洗炉子,这与通过安装管道传递到房间的噪声有关。通过对某市政公司工厂各工位的分析,发现干燥室中机器设备操作人员的符合性偏差水平最高
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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