基于数值模拟的生物燃料柴油机运行周期改进研究

L. Plotnikov, L. Osipov
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引用次数: 1

摘要

提高热机的效率和改善热机的环境友好性是人类迫切需要解决的问题。本文论述了生物燃料作为往复式内燃机燃料的使用。本文简要概述了当前关于这一主题的研究。本文介绍了一台涡轮增压柴油机(气缸直径123毫米,活塞行程156毫米)在生物柴油(柴油和大豆甲酯按80/20的比例混合)上运行时的工作循环调整结果。这项科学研究是基于活塞机工作循环的数学模型。在Diesel-RK软件中对工作周期进行了数学建模。本文简要介绍了生物燃料的理化性质。本文还对所研究发动机的数学模型作了简要分析。根据柴油机的30多个典型参数对数学模型进行了调整。在数值模拟结果的基础上,提出了一种新的喷嘴喷嘴设计方案,选择了柴油机主要工作模式下的最优喷油提前角和供油规律。提议的措施导致有效功率增加(高达5%),特定燃料消耗减少(高达6%)和环境友好性的改善。
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Improving the Operating Cycle of a Diesel Engine on Biofuel Based on Numerical Modeling
The issues of increasing the efficiency and improving the environmental friendliness of heat engines are urgent problems of mankind. The article deals with the use of biofuel as a fuel for reciprocating internal combustion engines. A brief overview of current research on this topic is presented in the article. This paper presents the results of tuning the working cycle of a turbocharged diesel engine (cylinder diameter 123 mm, piston stroke 156 mm) for operation on bio-diesel fuel (a mixture of diesel fuel and soy methyl ester in a ratio of 80/20). This scientific study is based on mathematical modelling of the working cycle of piston machines. Mathematical modelling of the working cycle was carried out in the Diesel-RK software. A brief description of the physicochemical properties of biofuels is given in the article. A brief analysis of the mathematical model for the engine under study is also presented in the article. The mathematical model was tuned according to more than 30 parameters typical for diesel engines. Based on the results of numerical simulation, a new design of the nozzle atomizer is proposed, the optimal fuel injection advance angle and the fuel supply law for the main modes of diesel engine operation are selected. The proposed measures have led to an increase in effective power (up to 5%), a decrease in specific fuel consumption (up to 6%) and an improvement in environmental friendliness.
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