Experimental Study of Sound Pressure Level in Hydraulic Power Unit with External Gear Pump

Author:

Mitov Alexander1ORCID,Nedelchev Krasimir2,Kralov Ivan2

Affiliation:

1. Department of Hydroaerodynamics and Hydraulic Machines, Technical University of Sofia, Kliment Ohridski 8 Boulevard, 1000 Sofia, Bulgaria

2. Department of Mechanics, Technical University of Sofia, Kliment Ohridski 8 Boulevard, 1000 Sofia, Bulgaria

Abstract

The article presents the results of an experimental study of the sound pressure level (SPL) caused by a hydraulic power unit with an external gear pump. The study was carried out with a specially developed laboratory experimental setup based on a common architecture used in hydraulic power units. Both the hydraulic system and the measuring equipment used are described in detail. The design of the experimental studies performed, including two main configurations with specific parameters regarding the operating modes of the system, is presented. The experimental results obtained are presented in the form of magnitude frequency responses which are compared in accordance with the experiment design. An analysis of the results obtained is performed using various quantitative indicators. For specific operating modes, parametric models were derived by approximation of the experimental data. The resulting models can serve in future work to reduce the SPL by passive or active means (e.g., frequency control of the electric motor). The quantitative analysis can serve as a basis of comparison with results obtained after adding passive (damping ring, etc.) or active means to reduce the SPL.

Funder

European Regional Development Fund

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference32 articles.

1. Akers, A., Gassman, M., and Smith, R. (2006). Hydraulic Power System Analysis, Taylor and Francis Group. [1st ed.].

2. (2003). Hydraulic Fluid Power—Test Code for the Determination of Sound Power Levels of Pumps Using Sound Intensity Techniques: Engineering Method—Part 1: Pumps (Standard No. ISO 16902-1:2003).

3. (2003). Acoustics—Determination of Sound Power Levels and Sound Energy Levels of Noise Sources Using Sound Pres-Sure—Engineering Methods for an Essentially Free Field over a Reflecting Plane (Standard No. ISO 3744:2010).

4. Jorges, I.H. (1987). Noise and Vibration Reduction in Hydraulic Drive Systems. [Ph.D. Thesis, TU-Sofia].

5. Hobbs, J., and Fricke, H.-J. (1980). New Methods of Reducing Noise in External Gear Pumps, SAE International. SAE Technical Papers.

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