能源方面的SI发动机负荷调整通过提前关闭进气阀或排气阀

Z. Żmudka, S. Postrzednik, G. Przybyła
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引用次数: 0

摘要

对内燃机负荷调整进行了理论分析。载荷,特别是在SI发动机中,高度依赖于电荷交换过程。这个过程对发动机功的有效性有重大影响,因为它与克服流动阻力的必要性有关,然后与做功的必要性有关,即所谓的电荷交换功。节流阀在部分负荷运行时产生的流动阻力特别大。开放式理论循环已被假定为发动机过程的模型。采用全可变进排气阀定时可以实现循环,例如根据两个系统:进气阀提前关闭系统(EIVC)和排气阀提前关闭系统(EEVC)。对这两种系统分别进行了分析,并与塞利格-萨巴特循环进行了比较。塞利格-萨巴特循环是发动机负荷经典油门调节的理论循环。根据选定的参数:燃料剂量、循环功、电荷交换功和循环效率,评估了采用独立进排气阀控制系统所产生的效益。使用所分析的系统来控制SI发动机负载,将能够从进气系统中消除节流阀,减少电荷交换工作,特别是在部分负载操作范围内。电荷交换功的减少导致内部有效功的增加,从而提高了火花点火发动机的有效效率。此外,EEVC可以实现内部EGR。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy aspects of the SI engine load adjustment by early closing of inlet or exhaust valve
The theoretical analysis of the SI engine load adjustment has been presented. The load especially in SI engine is highly dependent on the process of charge exchange. This process has significant impact on the effectiveness of an engine work because it is connected with the necessity of overcoming the flow resistance, then with the necessity of doing a work, so-called the charge exchange work. The flow resistance caused by throttling valve is especially high during part load operation. The open theoretical cycle has been assumed as a model of processes proceeding in the engine. Using fully variable inlet and exhaust valves timing the cycle can be realized e.g. according to two systems: system with early inlet valve closing (EIVC) and system with early exhaust valve closing (EEVC). Both systems have been analysed individually and comparatively with the open Seiliger-Sabathe cycle, which is theoretical cycle for the classical throttle governing of an engine load. Benefits resulting from application of the systems with independent inlet and exhaust valves control have been assessed on the basis of the selected parameters: a fuel dose, a cycle work, a charge exchange work and a cycle efficiency. The use of the analysed systems to governing of the SI engine load will enable to eliminate a throttling valve from inlet system and reduce the charge exchange work, especially within the range of part load operation. Decrease of the charge exchange work leads to increase of the internal and effective works, which results in increase of the effective efficiency of the spark ignition engine. Additionally, the EEVC enables realization of the internal EGR.
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