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Highway Mounted Horizontal Axial Flow Turbines For Wind Energy Harvesting From Cruising Vehicles

机译:高速公路安装水平轴流涡轮机,用于巡航车辆的风能收割

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Renewable energy technologies are a growing subject of concern these days. Wind energy is one among the renewable energy sources which has been implemented in a large scale for energy production. A large amount of capital has been invested in this field to harness energy and power homes. Wind energy from highways is usually unused and can provide a considerable amount of wind energy to drive a turbine due to high vehicle traffic and the speed of the vehicles. Extensive research on wind patterns is required to determine the average velocity of the wind created by oncoming vehicles. The objective of this work is to design and analyze a horizontal axis wind turbine to capture wind energy from moving vehicles on the highway. A computational fluid dynamics approach is used to solve this problem. The major innovation in this paper is that wind energy is being harvested in a very unique manner and also turbine power calculations have been done to quantify the amount of energy being harvested. Although a few of the literatures have discussed similar ideas power quantification has never been done. Also the entire mechanism has been simulated in MATLAB to find out the number of cars required to charge a battery which is very unique to this paper. Power calculations have been done for the turbine and validated against theoretical calculations which were done using the concept of velocity triangles. The idea is to have a separate mounting for cars and heavy vehicles which can be realized by having separate lanes on highways. The analysis will be done for vehicles moving in a range of speeds on the highway. The wind turbines will be placed on overhead shafts (the height of which is be determined suitably) thereby capturing the wind generated as a result of pressure difference. The mounts can also be used as signboards for vehicles moving on the highway and hence serve a dual purpose. In addition, extensive structural and fatigue analysis will be done for the turbines and the mounting structures in order to determine a suitable material for the turbine as well as the mounts to withstand the forces generated. Using all of the collected energy, existing amenities such as street lights on the medians can be powered by these wind turbines. Thus the main objective of this work is to complement the conventional electrical energy used for powering amenities along highways by a renewable source of energy (wind power) thereby leading to the concept of sustainable highways.
机译:可再生能源技术是这些日子令人担忧的不断增长的主题。风能是可再生能源中的一种,这些能源是以大规模实施的能源生产。这一领域已经投入了大量资金来利用能源和电力家庭。来自高速公路的风能通常是未使用的,并且可以提供相当大量的风能,以引起由于高车辆交通和车辆的速度而导致涡轮机。需要对风图案的广泛研究来确定通过迎面而来的车辆产生的风的平均速度。这项工作的目的是设计和分析水平轴风风力涡轮机,以捕获从高速公路上移动车辆的风能。计算流体动力学方法用于解决这个问题。本文的主要创新是,正在以非常独特的方式收获风能,并且已经进行了涡轮功率计算以量化收获的能量。虽然一些文献已经讨论了类似的想法,但功率量化从未完成过。此外,Matlab中的整个机制已经模拟,找出为本文非常独特的电池充电所需的汽车数量。已经为涡轮机进行了功率计算,并验证了使用速度三角形概念完成的理论计算。该想法是为汽车和重型车辆进行单独安装,这可以通过在高速公路上具有单独的车道来实现。将对高速公路上的一系列速度移动的车辆进行分析。风力涡轮机将放置在架空轴上(其高度是适当地确定的),从而捕获由于压力差而产生的风。安装座也可以用作在高速公路上移动的车辆的招牌,因此服务是双重目的。此外,将为涡轮机和安装结构进行广泛的结构和疲劳分析,以便确定涡轮机以及承受所产生的力的涡轮机以及安装件的合适材料。使用所有收集的能量,中位数的街灯等现有设施可以由这些风力发电机供电。因此,这项工作的主要目的是通过可再生能源(风电)来补充用于沿高速公路供电的传统电能(风力),从而导致可持续高速公路的概念。

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