2001•International Journal of Applied Electromagnetics and MechanicsRequires access

Vibration analysis and control of reciprocating air-compressors

J. Rens, Richard E. Clark, David Howe

Open publisher page 3 citations

Abstract

Reciprocating air-compressors inherently generate high vibrational forces, which are transmitted to supporting structures and may result in a high level of acoustic noise. In many applications, this cannot be tolerated, and, therefore, an effective means of controlling the transmitted vibration energy between a compressor and its surroundings must be employed. In this paper, an analysis of a typical reciprocating actuator is described, and an active method for suppressing the transmission of vibrations is proposed.

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What this paper is about

Reciprocating air-compressors inherently generate high vibrational forces, which are transmitted to supporting structures and may result in a high level of acoustic noise. In many applications, this cannot be tolerated, and, therefore, an effective means of controlling the transmitted vibration energy between a compressor and its surroundings must be employed. In this paper, an analysis of a typical reciprocating actuator is described, and an active method for suppressing the transmission of vibrations is proposed.

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Available abstract

Reciprocating air-compressors inherently generate high vibrational forces, which are transmitted to supporting structures and may result in a high level of acoustic noise. In many applications, this cannot be tolerated, and, therefore, an effective means of controlling the transmitted vibration energy between a compressor and its surroundings must be employed. In this paper, an analysis of a typical reciprocating actuator is described, and an active method for suppressing the transmission of vibrations is proposed.

Key concepts: Reciprocating compressor, Reciprocating motion, Vibration, Automotive engineering, Gas compressor, Control theory (sociology), Structural engineering, Computer science

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