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Thermal effects in VRLA cells and comparison with wet lead-acid cells under different operating conditions

机译:VRLA电池在不同工作条件下的热效应以及与湿式铅酸电池的比较

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Sealed valve-regulated lead acid cells (VRLA) of the absorbent glass mat type suffer adversely from thermal effects compared to wet lead acid cells. Data are presented to show heat distribution in a battery stack of horizontally packed 500 Ah VRLA cells. Float and shallow cycling are examined since each have their own contribution to heat distribution. Comparison with equivalently sized wet cells is shown in the shallow cycling mode, which simulates peak-shaving. The data show the current and voltage limits during float charge to be significant factors in proper thermal management to avoid runaway. In a shallow, continuous peak shaving type cycling at constant power, considerable heat generation is observed for the VRLA cells. A new jar design with integral vertical ribs, coupled with a perforated steel housing, helps to significantly reduce the heat build up, as well as the temperature differential.
机译:与湿式铅酸电池相比,吸收性玻璃垫类型的密封阀控式铅酸电池(VRLA)受热影响不利。呈现的数据显示了水平包装的500 Ah VRLA电池的电池组中的热量分布。由于浮动和浅循环均对热量分布有各自的贡献,因此进行了检查。在浅循环模式下显示了与同等大小的湿室的比较,该模式模拟了削峰。数据表明,在浮动充电期间的电流和电压限制是正确进行热管理以避免失控的重要因素。在恒定功率下进行的浅连续连续削峰型循环中,可观察到VRLA电池产生大量热量。带有一体式垂直肋的新型广口瓶设计,加上带孔的钢制外壳,有助于显着减少热量积聚和温差。

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