首页> 外文会议>Biennial ASME Conference on Engineering Systems Design and Analysis >DEVELOPMENT OF A THERMODYNAMIC MODEL TO STUDY THE BEHAVIOUR OF RECIPROCATING AIR COMPRESSOR WITH DISC VALVE USED IN AUTOMOTIVE BRAKING SYSTEM
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DEVELOPMENT OF A THERMODYNAMIC MODEL TO STUDY THE BEHAVIOUR OF RECIPROCATING AIR COMPRESSOR WITH DISC VALVE USED IN AUTOMOTIVE BRAKING SYSTEM

机译:一种热力学模型,研究汽车制动系统圆盘阀往复式空气压缩机的行为

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Mathematical modeling is the process of designing a model of a real system and conducting experiments with it for the purpose of understanding the behaviour of the system. Mathematical simulation is widely used for investigating and designing the compressors. Investigations of the processes of reciprocating compressors using mathematical models is an effective tool by high development of computing technique, which enables complicated problems to be solved with a minimal number of simplifying assumptions. A considerable number of previous works has been done on the mathematical modeling and simulation. The aims of the present work are to construct a model which is easy to understand, easy to detect errors in the process of building a model and easy to compute a solution. This project presents a simplified and effective mathematical model for the estimation of reciprocating compressor performance using personal computers that can be easily handled. The effect of various physical parameters, like, clearance volume, cylinder diameter, connecting rod length, crank radius, valve lift and other dimensions, etc., and operating parameters, like, discharge pressure, compressor speed, etc., on thermodynamic behaviour of compressor in working condition has been analysed. The model has been developed for obtaining cylinder pressure, cylinder volume, cylinder temperature, valve lift and resultant torque at different crank angles and free air delivered and indicated power of the compressor.
机译:数学建模是设计真实系统模型的过程,并用它来实现实验,以便理解系统的行为。数学仿真广泛用于调查和设计压缩机。使用数学模型的往复式压缩机的过程的研究是通过高开发的计算技术的有效工具,这使得能够用最小的简化假设来解决复杂的问题。在数学建模和仿真中已经完成了相当数量的以前的作品。本工作的目的是构建一种易于理解的模型,易于检测建立模型过程中的错误,易于计算解决方案。该项目介绍了一种简化有效的数学模型,用于使用可以轻松处理的个人计算机估计往复式压缩机性能。各种物理参数,如间隙,空气,圆柱直径,连杆长度,曲柄半径,阀升力等尺寸等,以及操作参数,如排出压力,压缩机速度等,以及热力学行为已经分析了工作条件中的压缩机。该模型已经开发用于在不同的曲柄角度获得气缸压力,气缸体积,圆柱温度,阀升力和所得扭矩,并提供空气的空气,并指示压缩机的功率。

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