基于热电发电机的柴油机排气消声器附加能量收集

Aditya Wahyu Winadi Atmajaya, P. Suwandono
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引用次数: 0

摘要

轻型化石燃料汽车现在正在转向电力。电动汽车的转型始于混合动力汽车。混合动力汽车使用内燃机作为发电机。控制器系统、驾驶安全和娱乐轻型车的增长使它们消耗大量的电力、安全设备和驾驶生活方式的支持。汽车制造商目前正在开发一种用于混合动力汽车的额外电池充电系统,至少该系统可以增加电力消耗需求的满足。该充电系统既可以利用车辆本身的废能,也可以利用车辆系统外的废能。在本研究中,作者想要探索剩余废气中的热能收集系统。本研究的概念是开发热电发电机(TEG)作为发电装置。热源采用140kW柴油机,静止工况下热势523K,排气速度1407.05 m / s。本研究验证了潜在原型TEG,并将Ansys仿真与人工计算进行对比,作为进一步研究的第一步。结果表明,在30秒的数据收集过程中,排气TEG可以产生2.1伏的电压。对于温度为289K、流速为0.8的暖通冷却器TEG排气,冷却系统可以产生明显的温差。关键词:柴油机;热电;排气TEG系统;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Add-On Energy Harvesting of Diesel Exhaust Muffler Using Thermoelectric Generator
Trends Light fossil fuel vehicles are now turning to electricity. The electric vehicle transition begins with a hybrid car. The Hybrid vehicle uses an internal combustion engine as a generator. Controller systems, driving safety and entertain light vehicles are growing so that they consume a lot of electricity, Safe devices and driving lifestyle support. An additional battery charging system for a hybrid car now is being developed by the automotive manufacturer at least the system can increase the fulfilment of electricity consumption needs.The charging system can utilize waste energy vehicle itself or even from outside the vehicle system. In this research, the author wants to explore the thermal energy harvesting system in the remaining exhaust gases. The concept of this research is to develop a Thermoelectric Generator (TEG) as a power producer. The heat source uses a 140kW diesel engine with a heat potential of 523K at stationary conditions, and an exhaust velocity of 1407.05 m / s. This study demonstrates the potential prototype TEG then compared Ansys simulation and manual calculations as the first step for further research. The results obtained, the Exhaust TEG can produce a voltage of 2.1 Volt at 30 seconds of data collection. The cooling system on the TEG exhaust from the HVAC cooler with a temperature of 289K and a Velocity of 0.8 can produce a significant temperature difference.Keywords: Diesel Engine, Thermoelectric, Exhaust TEG system, Electricity.
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来源期刊
International Journal of Applied Science and Engineering
International Journal of Applied Science and Engineering Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
2.90
自引率
0.00%
发文量
22
期刊介绍: IJASE is a journal which publishes original articles on research and development in the fields of applied science and engineering. Topics of interest include, but are not limited to: - Applied mathematics - Biochemical engineering - Chemical engineering - Civil engineering - Computer engineering and software - Electrical/electronic engineering - Environmental engineering - Industrial engineering and ergonomics - Mechanical engineering.
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