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Wind resource assessment and wind farm modeling in Mossobo-Harena area, North Ethiopia

机译:北埃塞俄比亚Mossobo-Harena地区风资源评估与风电场模型

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摘要

Although Ethiopia does not have significant fossil fuel resource, it is endowed with a huge amount of renewable energy resources such as hydro, wind, geothermal, and solar power. However, only a small portion of these resources has been utilized so far and less than 30% of the nation’s population has access to electricity. The wind energy potential of the country is estimated to be up to 10 GW. Yet less than 5% of this potential is developed so far. One of the reasons for this low utilization of wind energy in Ethiopia is the absence of a reliable and accurate wind atlas and resource maps. Development of reliable and accurate wind atlas and resource maps helps to identify candidate sites for wind energy applications and facilitates the planning and implementation of wind energy projects. The main purpose of this research is to assess the wind energy potential and model wind farm in the Mossobo-Harena site of North Ethiopia. In this research, wind data collected for 2 years from Mossobo-Harena site meteorological station were analyzed using different statistical software to evaluate the wind energy potential of the area. Average wind speed and power density, distribution of the wind, prevailing direction, turbulence intensity, and wind shear profile of the site were determined. Wind Atlas Analysis and Application Program was used to generate the generalized wind climate of the area and develop resource maps. Wind farm layout and preliminary turbine micro-sitting were done by taking various factors into consideration. The IEC wind turbine class of the site was determined and an appropriate wind turbine for the study area wind climate was selected and the net annual energy production and capacity factor of the wind farm were determined. The measured data analysis conducted indicates that the mean wind speed at 10 and 40 m above the ground level is 5.12 and 6.41 m/s, respectively, at measuring site. The measuring site’s mean power density was determined to be 138.55 and 276.52 W/m~(2)at 10 and 40 m above the ground level, respectively. The prevailing wind direction in the site is from east to south east where about 60% of the wind was recorded. The resource grid maps developed by Wind Atlas Analysis and Application Program on a 10 km × 10 km area at 50 m above the ground level indicate that the selected study area has a mean wind speed of 5.58 m/s and a mean power density of 146 W/m~(2). The average turbulence intensity of the site was found to be 0.136 at 40 m which indicates that the site has a moderate turbulence level. According to the resource assessment done, the area is classified as a wind Class IIIB site. A 2-MW rated power ENERCON E-82 E2 wind turbine which is an IEC Class IIB turbine with 82 m rotor diameter and 98 m hub height was selected for estimation of annual energy production on the proposed wind farm. 88 ENERCON E-82 E2 wind turbines were properly sited in the wind farm with recommended spacing between the turbines so as to reduce the wake loss. The rated power of the wind farm is 180.4 MW and the net annual energy production and capacity factor of the proposed wind farm were determined to be 434.315 GWh and 27.48% after considering various losses in the wind farm.
机译:虽然埃塞俄比亚没有明显的化石燃料资源,但它是赋予了大量可再生能源资源,如水力,风,地热和太阳能。然而,到目前为止仅利用了这些资源的一小部分,不到30%的国家的人口可以获得电力。该国的风能潜力估计高达10 GW。到目前为止,还有不到5%的潜力。这种低利用风能在埃塞俄比亚利用的原因之一是没有可靠和准确的风地图集和资源地图。开发可靠和准确的风地图集和资源地图有助于识别风能应用的候选站点,并促进风能项目的规划和实施。本研究的主要目的是评估北埃塞俄比亚Mossobo-Harena遗址的风能潜力和模型风电场。在本研究中,使用不同的统计软件分析了从Mossobo-Harena现场气象站收集2年的风数据,以评估该地区的风能潜力。确定平均风速和功率密度,风,普遍的方向,湍流强度和部位的风剪轮廓。 Wind Atlas分析和应用程序用于生成该区域的广义风气氛并开发资源地图。通过考虑各种因素来完成风电场布局和初步涡轮机微型坐。确定了该部位的IEC风力涡轮机等级,并选择了用于研究区域风气候的适当风力涡轮机,并确定了风电场的净年度能源产量和容量因素。所传导的测量数据分析表明,在测量部位分别在地面10和40米处的平均风速分别为5.12和6.41m / s。测量部位的平均功率密度分别测定为138.55和276.52W / m〜(2),分别为地面10和40米。现场在现场的风向是从东到东南部的,录制了大约60%的风。 Wind Atlas分析和应用程序开发的资源网格图在10公里×10公里区域的地面上50米处,表明所选的研究区域的平均风速为5.58 m / s,平均功率密度为146 w / m〜(2)。发现该部位的平均湍流强度为0.136,40 m表示该部位具有中等的湍流水平。根据资源评估完成,该地区被归类为风电IIIB网站。选择2-MW额定功率Enercon E-82 E2风力涡轮机,该风力涡轮机是IEC类IIB涡轮机,具有82M转子直径和98米毂高度,用于估计建议的风电场上的年能生产。 88 Enercon E-82 E2风力涡轮机在风电场中正确占据了涡轮机之间的推荐间距,以减少唤醒损失。风电场的额定功率为180.4兆瓦,拟议的风电场的净年度能源产量和容量因素在考虑风电场的各种损失后确定了434.315克/小时,27.48%。

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