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Preliminary Investigation on Generation of Electricity Using Micro Wind Turbines Placed on A Car

机译:放置在汽车上的微型风力发电机发电的初步研究

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Wind energy is one of the prominent resources for renewable energy and it is traditionally extracted using stationary wind turbines. However, it can also be extracted using mini or micro wind turbines on a moving body, such as an automobile, while cruising at high speeds on freeways. If the electricity is produced using air flowing around the vehicle without affecting aerodynamic performance of the vehicle, it can be used to charge up the battery or power up additional accessories of the vehicle. For the first time , in the present work, a preliminary investigation was carried out to generate electricity by utilizing air flow on a moving car. Initially, a correlation between the car speed and wind velocity was established using an anemometer. Placing a set of two micro wind turbines along with two micro generators on the rear end of the car trunk, the present study investigated the feasibility of generating electricity from these micro wind turbines while evaluating the effect of drag force on the performance of the car through the experimental approach and computational fluid dynamics (CFD) simulations. Both approaches confirmed negligible effect of drag force on the vehicle performance in terms of gas mileage and changes in drag coefficient values. Following these studies, the micro wind turbines were also tested for electricity generation at various cruising speeds of the car ranging from 50 to 80 mph on the freeways. The voltage and power generated always showed an increasing trend with increasing the car speed, however they saturated when a cut off limit was setup with the voltage controllers. A maximum voltage of 3.5 V and a maximum current of 0.8 A were generated by each micro wind turbine when a cut off limit was used along with a load consisting of four LED bulbs in parallel with 3.5 V and 0.2 A rating each. On the other hand, when the tests were repeated without using the cut-off limit, a maximum voltage of 18.91 V and a maximum current of 0.65 A were recorded with a load of six flash bulbs in series (flash bulb rating – 4.8 V and 0.5 A each). These studies clearly demonstrate the flexibility to vary the voltage and current outputs from the micro wind turbines indicating a possibility for utilizing the wind energy on the cars at high speeds. Keywords: automobile, renewable energy; wind energy Article History : Received Sept 5 th 2016; Received in revised form Dec 6 th 2016 ; Accepted January 4 th 2017; Available online How to Cite This Article : Bangi, V.K.T., Chaudhary, Y., Guduru, R.K., Aung, K.T and Reddy, G.N. (2017) Preliminary investigation on generation of electricity using micro wind turbines placed on a car. Int. Journal of Renewable Energy Development, 6(1), 75-81. http://dx.doi.org/10.14710/ijred.6.1.75-81.
机译:风能是可再生能源的重要资源之一,传统上是使用固定式风力涡轮机提取的。但是,当在高速公路上高速巡航时,也可以使用微型或微型风力涡轮机在移动物体(例如汽车)上将其提取。如果使用流过车辆的空气产生电能而不影响车辆的空气动力性能,则可将其用于为电池充电或为车辆的其他附件供电。在目前的工作中,这是第一次通过利用动车上的气流发电来进行初步研究。最初,使用风速计确定车速与风速之间的相关性。本研究将两个微型风力发电机组与两个微型发电机一起放置在汽车后备箱的后端,研究了通过这些微型风力发电机发电的可行性,同时评估了牵引力对汽车性能的影响。实验方法和计算流体动力学(CFD)模拟。两种方法都证实了在油耗和阻力系数值变化方面,阻力对​​车辆性能的影响可忽略不计。在进行了这些研究之后,还对微型风力涡轮机在高速公路上从50 mph到80 mph的各种巡航速度下的发电进行了测试。随着轿厢速度的提高,产生的电压和功率总是呈上升趋势,但是当使用电压控制器设置截止极限时,它们就会饱和。当使用截止极限以及由四个并联的,分别具有3.5 V和0.2 A额定值的LED灯泡组成的负载时,每个微型风力涡轮机将产生3.5 V的最大电压和0.8 A的最大电流。另一方面,在不使用截止极限的情况下重复测试时,在六个串联的闪光灯灯泡的负载下(闪光灯额定电压– 4.8 V和每个0.5 A)。这些研究清楚地表明了改变微型风力涡轮机输出的电压和电流的灵活性,这表明有可能以高速利用汽车上的风能。关键词:汽车,可再生能源;风能文章历史:于2016年9月5日收到; 2016年12月6日以修订形式收到; 2017年1月4日接受;在线提供如何引用本文:班吉,V.K.T.,乔德哈里,Y.,古杜鲁,R.K.,昂,K.T和雷迪,G.N. (2017)使用放在汽车上的微型风力发电机发电的初步调查。诠释Journal of Renewable Energy Development,6(1),75-81。 http://dx.doi.org/10.14710/ijred.6.1.75-81。

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