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Design optimization of large SWRO plants utilizing time-of-use (TOU) energy prices

机译:利用分时(TOU)能源价格优化大型SWRO工厂的设计

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摘要

The Israeli electricity pricing system is characterized by a sophisticated TOU (time-of-use) tariff. Different prices apply to different hours of the day and different seasons of the year following the electricity system management considerations. Current pricing system defines three yearly seasons, each having peak, shoulder and off-peak prices. This obviously can significantly affect design optimization of large SWRO desalination plants by shifting the Capex/Opex tradeoff. The effect of utilizing TOU differential prices to reduce energy and consequently unit water cost is demonstrated and parametrically analyzed. Two design options satisfying the same water demand are compared: (a) a plant having constant hourly production capacity; (b) a larger plant designed to avoid operation at electricity peak loads. Unit water cost savings demonstrated are in the range of (-1.8)-9.1 UScent/m3 depending strongly on prevailing average electricity price and economy of scale factor. A TOU utilization optimization model is proposed, composed of two steps: (i) optimizing plant design to achieve the lowest possible specific energy consumption, especially while operating at high energy prices; (ii) maximizing water production while operating at off-peak energy prices. Energy cost savings of approximately 18% are achieved given a peak to off-peak price ratio of 2.8:1.
机译:以色列的电价系统的特点是复杂的TOU(使用时间)电价。根据电力系统管理考虑,不同的价格适用于一天中的不同时段和一年中的不同季节。当前的定价系统定义了三个年度,每个季节都有最高价,肩膀价和非高峰价。显然,这会通过改变资本支出/运营成本折衷方案而对大型SWRO海水淡化厂的设计优化产生重大影响。利用分时电价差价来减少能源并因此降低单位水成本的效果已得到证明并进行了参数分析。比较了满足相同需水量的两种设计方案:(a)具有恒定小时生产能力的工厂; (b)旨在避免在电力高峰负荷下运行的大型工厂。所证明的单位水费节省在(-1.8)-9.1 UScent / m3范围内,这在很大程度上取决于当前的平均电价和规模经济。提出了一个TOU利用率优化模型,该模型包括两个步骤:(i)优化工厂设计以实现最低的单位能耗,尤其是在高能源价格下运行时; (ii)在以非高峰能源价格运行的同时最大化水的生产。如果峰峰值价格与非峰峰值价格之比为2.8:1,则可节省约18%的能源成本。

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