Mathematical Description of the Reciprocating Compressor Taking Into Account the Influence of Suspension Parameters on Its Output Characteristics

IF 0.7 4区 工程技术 Q4 ENGINEERING, CHEMICAL
M. Yu. Elagin, R. N. Khmelev
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引用次数: 0

Abstract

A mathematical model of a reciprocating compressor is presented, consisting of a system of moving solid bodies, the center of mass of which is displaced, leading to vibrations of the compressor casing that is mounted on a suspension relative to a stationary base. The suspension elements possess dissipative properties and dissipate the energy transmitted to them, resulting in a loss of part of the mechanical energy generated by the electric motor. The vibrations of the reciprocating machine on the suspension are characterized by the vibration velocity, which is one of the most important environmental indicators. In this regard, assessing and, if necessary, minimizing these losses, as well as investigating the influence of the suspension parameters on the output characteristics of the compressor, becomes relevant. The proposed mathematical model is based on the methodology of the thermodynamics of open systems, the laws of mechanics describing the relative motion of the reciprocating elements, and the laws governing the motion of the center of mass of the system of moving elements, as well as the motion of the system relative to the center of mass. The mathematical model has been validated on the household refrigerator compressor KKh-0.125. The results obtained confirm the adequacy of the developed mathematical model.

Abstract Image

考虑悬架参数对往复压缩机输出特性影响的数学描述
提出了一种往复式压缩机的数学模型,该模型由一个运动的实体系统组成,该系统的质心发生位移,导致安装在悬架上的压缩机机匣相对于固定基座产生振动。悬架元件具有耗散特性,耗散传递给它们的能量,导致电动机产生的部分机械能损失。往复机械在悬架上的振动以振动速度为特征,振动速度是最重要的环境指标之一。在这方面,评估并在必要时尽量减少这些损失,以及研究悬架参数对压缩机输出特性的影响,变得至关重要。所提出的数学模型是基于开放系统的热力学方法、描述往复运动元素的相对运动的力学定律、控制运动元素系统的质心运动的定律以及系统相对于质心的运动。该数学模型在家用冰箱压缩机KKh-0.125上进行了验证。所得结果证实了所建立数学模型的充分性。
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来源期刊
CiteScore
1.20
自引率
25.00%
发文量
70
审稿时长
24 months
期刊介绍: Theoretical Foundations of Chemical Engineering is a comprehensive journal covering all aspects of theoretical and applied research in chemical engineering, including transport phenomena; surface phenomena; processes of mixture separation; theory and methods of chemical reactor design; combined processes and multifunctional reactors; hydromechanic, thermal, diffusion, and chemical processes and apparatus, membrane processes and reactors; biotechnology; dispersed systems; nanotechnologies; process intensification; information modeling and analysis; energy- and resource-saving processes; environmentally clean processes and technologies.
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