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Methodology for Maximising the Use of Renewables with Variable Availability

机译:最大限度地利用可变可用性的可再生能源的方法

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A problem in exploiting renewable energy sources, as wind and solar radiation, is their fluctuating availability. To deal with it, the Heat Integration methodology for batch processes based on Time Slices (TS) was extended. Two approaches to identify the size and number of TS for variable renewable supply are investigated for solar energy. The first specifies a threshold load within which the fluctuation can be neglected. The optimal threshold value is selected from the trade-off between the overall inaccuracy and number of TSs. The second approach is to partition the measured/forecasted heat load curve using a large number of candidate time boundaries and approximate it by a piecewise-constant profile with high precision. The profile is supplied to a MILP formulation to screen the candidate time boundaries using binary variables of acceptance/rejection. The TS definitions are completed by approximating heat loads. The solutions are compared using several criteria including inaccuracies and numbers of TSs. The number of TSs and their sizes are ready to be used in Total Site analysis.
机译:开发可再生能源(如风和太阳辐射)的一个问题是其可利用的波动。为了解决这个问题,扩展了基于时间片(TS)的批处理热集成方法。研究了两种用于确定可变可再生能源供应量的大小和数量的太阳能方法。第一个参数指定了可以忽略波动的阈值负载。最佳阈值是从总体不准确性和TS数量之间的权衡中选择的。第二种方法是使用大量候选时间边界划分测得的/预测的热负荷曲线,并通过高精度的分段常数轮廓对其进行近似。该配置文件被提供给MILP公式,以使用接受/拒绝的二进制变量来筛选候选时间边界。 TS的定义是通过近似热负荷来完成的。使用几种标准比较解决方案,包括TS的不准确性和数量。 TS的数量及其大小已准备好用于总站点分析。

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