A Mathematical Model for Float Operation of Valve-Regulated Lead-Acid Batteries

U. Teutsch
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引用次数: 8

Abstract

Valve-regulated lead-acid batteries are often used in uninte-rruptible power supplies. In these applications, the battery is continuously charged at low voltage to avoid gradual self (dischlarge. During float charging, SCVCIeral rCeqlir-emients have to be imiet: * In each cell positive and negative electriodes should be polarized sufficiently to maintain full state of charge. . The rates of water decomposition and grid corrosion shiould be as low as possible to ensure long service life. . Scattering of cell voltages in a battery string shlold be small, to allow a relatively low float voltage and to avoid non-unifor-mii ageing of cells. In the scope of an investigationi of factors relevant to thsce irequireIcints. a ma(tlhemiiatical model for float charging of lead-acid batteries has been developed, describing cffects otf float conditions and kinetic cell paramleter s on electrode potentials and electrode reaction rates.
阀控铅酸蓄电池浮载运行的数学模型
阀控铅酸蓄电池常用于不间断电源。在这些应用中,电池在低电压下连续充电,以避免逐渐自放电。在浮充过程中,必须限制若干元件:*每个电池的正极和负极应充分极化以保持完全充电状态。水分解率和栅格腐蚀率应尽可能低,以确保较长的使用寿命。电池组中电池电压的散射应该很小,以允许相对较低的浮动电压,并避免电池的非均匀老化。在调查与这些要求有关的因素的范围内。建立了铅酸电池浮子充电的数学模型,描述了浮子条件和电池动力学参数对电极电位和电极反应速率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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