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Meritve in sanacija hrupa v lesni industriji
ID Lipar, Davor (Author), ID Kožuh, Mitja Robert (Mentor) More about this mentor... This link opens in a new window

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Abstract
V diplomskem delu smo se seznanili z zvokom in sicer z njegovim nastankom, širjenjem ter vrstami zvoka. Stranski produkt zvoka je hrup, ki predstavlja njegovo neželeno komponento in čigar negativen vpliv na človeka v vsakdanjem življenju želimo minimalizirati. Dolgotrajna izpostavljenost hrupu lahko povzroči različna obolenja, vpliva lahko na sluh, prav tako pa povzroča tudi različne bolezni živčevja in srčno žilne bolezni. V nadaljevanju diplomskega dela smo se osredotočili na hrup na delovnem mestu. Zanimalo nas je, ali je raven hrupa, ki so ji delavci dnevno izpostavljeni v zakonodajnih okvirih, ali presega mejo dovoljene vrednosti. Hrup smo merili v lesno predelovalni industriji na treh različnih delovnih mestih. S terčno analizo smo hrup podrobneje analizirali skozi celoten frekvenčni spekter človeškega sluha. Rezultati meritev in frekvenčna analiza sta nam bila v pomoč pri nadaljnjih predlogih za sanacijo hrupa na delovnih mestih, ki so bili predmet raziskav.

Language:Slovenian
Keywords:hrup, ekvivalentna raven hrupa, frekvenčna analiza, zvok, meritve hrupa
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FKKT - Faculty of Chemistry and Chemical Technology
Year:2019
PID:20.500.12556/RUL-111451 This link opens in a new window
COBISS.SI-ID:1538449347 This link opens in a new window
Publication date in RUL:01.10.2019
Views:1548
Downloads:236
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Secondary language

Language:English
Title:Noise measurements and control in woodworking industry
Abstract:
In this work, we got acquainted with sound in general, namely with its creation, propagation, and its many types. The by-product of sound is noise, which is characterized as an unwanted and harmful component of sound and by that our goal is to limit human exposure to it by as much as possible. Long-term exposure to noise can impact our health ability, hurt our psychological wellbeing and be the cause of many illnesses, including neurological and cardiovascular diseases. Later in work, we shifted our focus to the level of noise in the working environment. The goal was to determine if the level of noise that the workers are exposed to daily is within the legislative framework. The noise was measured in a typical woodworking facility at three different locations within the operating environment. The measured values were interpreted in detail using third octave-band analysis along with the complete frequency spectrum of human hearing. The obtained results of the measurements and analysis were used to conduct additional recommendations for the control of noise in the working environments, that were subjected to research.

Keywords:noise, equivalent continuous sound level, frequency analysis, sound, noise measurement

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