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含水乙醇与柴油和生物柴油混合物喷雾特性的数值分析

Numerical analysis of spray characterization of blends of hydrous ethanol with diesel and biodiesel.

作者信息

Shanthan Vardelli, Suryawanshi Jiwak, Tarodiya Rahul, Loyte Akshay, Devarajan Yuvarajan, Kaliappan Nandagopal

机构信息

Department of Mechanical Engineering, Visvesvaraya National Institute of Technology, Nagpur, Maharashtra, India.

Department of Mechanical Engineering, Saveetha School of Engineering, SIMATS, Saveetha University, Chennai, Tamil Nadu, India.

出版信息

Sci Rep. 2024 Mar 8;14(1):5726. doi: 10.1038/s41598-024-56444-0.

Abstract

The spray characteristics of a fuel greatly influence the combustion as it affects the formation of an air-fuel mixture, which directly impacts the performance and emissions of the engine. This study investigates the physical injection spray characteristics of biofuels to optimize the engine operating parameters for their effective utilization. For the analysis of the spray characteristics of pure diesel (D100), 80% diesel-20% biodiesel (D80B20), 80% diesel-10% biodiesel-10% pure ethanol (D80B10E10), and 80% diesel-10% biodiesel-10% hydrous ethanol (D80B10HE10) are investigated. Computational Fluid Dynamics (CFD) modeling of a constant volume chamber under non-evaporative conditions is performed to conduct numerical analysis. The chamber pressure of 2 and 2.5 MPa and nozzle injection diameter of 0.126 mm, 0.15 mm, and 0.2 mm are considered to conduct the simulations. The variation in spray penetration length is analyzed and discussed for the injection of different fuel blends at different initial conditions. It is observed from numerical results that the high-density fuel blend D80B20 has a penetration length of 10.695% and 15.805% higher than pure diesel and D80B10HE10 blends, respectively. For pure diesel, with an increase in nozzle diameter from 0.126 mm to 0.15 mm and 0.2 mm, the penetration length is increased by 20% and 32%, respectively, and with an increase in pressure from 2 MPa to 2.5 MPa, penetration length is decreased by 14.62%. From this study, it can be concluded that biofuels like biodiesel and hydrous ethanol can be used with diesel in blended form over pure ethanol. Compared to pure ethanol, hydrous ethanol gives cost benefits and better spray characteristics.

摘要

燃料的喷雾特性对燃烧有很大影响,因为它会影响空气-燃料混合物的形成,而这直接影响发动机的性能和排放。本研究调查生物燃料的物理喷射喷雾特性,以优化发动机运行参数,实现其有效利用。为分析纯柴油(D100)、80%柴油-20%生物柴油(D80B20)、80%柴油-10%生物柴油-10%纯乙醇(D80B10E10)和80%柴油-10%生物柴油-10%含水乙醇(D80B10HE10)的喷雾特性,进行了研究。在非蒸发条件下对定容燃烧室进行计算流体动力学(CFD)建模,以进行数值分析。模拟时考虑了2MPa和2.5MPa的燃烧室压力以及0.126mm、0.15mm和0.2mm的喷嘴喷射直径。分析并讨论了在不同初始条件下喷射不同燃料混合物时喷雾贯穿长度的变化。从数值结果可以看出,高密度燃料混合物D80B20的贯穿长度分别比纯柴油和D80B10HE10混合物高10.695%和15.805%。对于纯柴油,随着喷嘴直径从0.126mm增加到0.15mm和0.2mm,贯穿长度分别增加20%和32%,随着压力从2MPa增加到2.5MPa,贯穿长度减少14.62%。从本研究可以得出结论,生物柴油和含水乙醇等生物燃料可以与柴油以混合形式使用,优于纯乙醇。与纯乙醇相比,含水乙醇具有成本优势和更好的喷雾特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3669/11319443/03a851ced7c4/41598_2024_56444_Fig1_HTML.jpg

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