首页> 外文会议>European Photovoltaic Solar Energy Conference and Exhibition >EVALUATION OF FULL COST ACCOUNT POTENTIAL IN SOLAR RESOURCE FOR ENERGY IN A BRAZILIAN REGION USING DE IRP METHODOLOGY FOR SUSTAINABLE DEVELOPMENT
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EVALUATION OF FULL COST ACCOUNT POTENTIAL IN SOLAR RESOURCE FOR ENERGY IN A BRAZILIAN REGION USING DE IRP METHODOLOGY FOR SUSTAINABLE DEVELOPMENT

机译:利用DE IRP可持续发展方法评估巴西太阳能资源的全部成本潜力

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The full account evaluating potential for energy resources aims a quantitative analysis and the technology to be applied for its development. In this context, for a solar's resources evaluation in the Aracatuba region inside the IRP process, it should be, necessarily, beginning with the radiation data collection for this region, this characterization and evaluation of its theoretical energy potential. After obtaining the theoretical energy potential, the next step in the IRP is the Full Account Evaluation in order to obtain the potential that could be realizable for the solar resource through the accounting of the attributes and sub attributes related with the social, environmental, political and technical-economical dimensions The energy potential for the solar resource can be measured with the historical struck radiation data and its behavior through the seasons. The technical viability of photovoltaic panels implementation, be it in small or large scale, depends on the average struck incident of the region. The obtained data corroborate to a deeper analysis of the solar resource evaluation inside the IRP process, with average 5,11 kWh/m~2.day, bringing to the account the survey of implementation costs, O&M costs, availability factor and capacity factor, allowances mechanisms, return of investment, payback, technology domain and time for implementation.
机译:全面评估能源潜力的目的在于进行定量分析,并将其用于开发技术。在这种情况下,对于IRP流程内阿拉卡图巴地区的太阳能资源评估,必须从该地区的辐射数据收集开始,对其特征和理论能量潜力进行评估。在获得理论上的能源潜力之后,IRP的下一步是全面账户评估,以便通过对与社会,环境,政治和社会相关的属性和子属性进行核算,来获得太阳能可实现的潜力。技术经济规模可以使用历史的辐射数据及其在整个季节的行为来测量太阳能的能源潜力。实施光伏面板的技术可行性,无论规模大小,均取决于该区域的平均撞击事件。所获得的数据证实了对IRP流程内部太阳能资源评估的更深入分析,其平均发电量为5,11 kWh / m〜2.day,考虑了实施成本,运维成本,可用性因子和容量因子的调查,补贴机制,投资回报,投资回报,技术领域和实施时间。

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