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Design and Study of Aerodynamics of Wind-Solar Hybrid System for Domestic Application by Using Balsa Wood

机译:使用Balsa Wood对国内申请风光混合系统空气动力学的设计与研究

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Increasing levels of modernization in different countries worldwide have lead to an exponential growth in national energy demand. India with its huge population base had a total grid connected electric power close to 285 GW during 2015 with annual generation of 1106 TWh accounting to a per-capita energy consumption of 746 kWh. The Government of India under its ambitious plan "Power for all" envisages 24 × 7 power supply for the entire domestic and Industrial loads by the year 2022. This power sector initiative also promises the generation through green path by targeting reduction in carbon footprint. The plan has sanctioned funds for production of 190 GW power based on go green initiative of United Nations Organization and a step forward to create a better environment for future generations. The proposed work aims at design of wind-solar hybrid system for light load decentralized applications. The computational tools were used to model and analyze wind turbine (WT) blade structure for low power applications to suit decentralized power generation based on renewable energy. The comparative studies of test aerofoil with standard NACA 0018 aerofoil indicated conformance of the test aerofoil as a profile for WT blades. The test aerofoil has the feature of easier manufacturability as against standard NACA 0018 profile adopted in commercial WT blades. The studies conformed suitability of test profile at specified angle of attack with WT blade structure and hub construction using balsa wood. The choice of balsa wood was based on properties of lighter weight and adequate strength that was supported on the designed tower of tripod type. The designed WT system was for a rated power output of 75 W while operating at an average wind speed of 4.5 m/s. The system developed will be a feasible option for powering households in rural India.
机译:全球不同国家的现代化水平增加导致国家能源需求的指数增长。印度拥有巨大的人口基地,总电网连通电力接近2015年的285 GW,每年发行1106 TWH,占746千瓦时的人均能源消耗。印度政府根据其雄心勃勃的计划“所有人”,设想了2022年的整个国内和工业负荷的24×7电力。该电力部门倡议还通过针对碳足迹的减少来通过绿色路径来发电。该计划根据联合国组织的GO Green倡议制定了190 GW权力的生产资金,并向未来几代人创造更好的环境。拟议的工作旨在设计风光太阳能混合系统,用于光负荷分散应用。计算工具用于模拟和分析风力涡轮机(WT)刀片结构,用于低功率应用,以适应基于可再生能量的分散发电。标准Naca 0018翼型试验机制的比较研究指示试验机身作为WT叶片的轮廓的一致性。测试Aerofoil具有更简单的可制造性的特征,与商业WT叶片采用的标准Naca 0018型材。这些研究符合使用Balsa木材的WT叶片结构和轮毂施工的指定攻角测试曲线的适用性。 Balsa木材的选择基于重量较轻的性质和足够的强度在设计的三脚架类型的塔架上支持。设计的WT系统用于75W的额定功率输出,虽然平均风速为4.5米/秒。该系统将成为印度农村供电的可行选择。

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