首页> 外文会议>ASME Heat Transfer/Fluids Engineering Conference >EFFECT OF TEMPERATURE VARIATION ON NICKEL CADMIUM (NI-CD) AND NICKEL METAL HYDRIDE (NI-MH) BATTERY PARAMETERS
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EFFECT OF TEMPERATURE VARIATION ON NICKEL CADMIUM (NI-CD) AND NICKEL METAL HYDRIDE (NI-MH) BATTERY PARAMETERS

机译:温度变化对镍镉(Ni-CD)和镍金属氢化物(Ni-MH)电池参数的影响

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The ultra-fast charging capability, distinct properties, fine performance and high capacity of nickel cadmium (Ni-Cd) and nickel metal hydride (Ni-MH) batteries along with their limited weight and size are very attractive for use in many applications including cordless and portable devices, emergency and standby power, telecommunication equipments, photovoltaic systems, electric vehicle, satellite and space craft and power plant supporting equipments. However, the limitation on their temperature requires a detail thermal analysis of these batteries. Thermal behavior of batteries are effected by their boundary conditions, type and construction, and more importantly by their chemical reaction. The purpose of this study is to investigate the effect of temperature on thermal behavior of the Ni-Cd and Ni-MH batteries. The governing equation is the transient and nonlinear differential energy equation subjected to non linear radiation boundary conditions and source term. To solve the transient and non-linear governing differential energy equation a control volume based finite difference code is utilized. In formulation of the governing differential energy equation, the Ni-Cd and Ni-MH properties (K, C, ρ) are not .constant and the chemical characteristic of the Ni-Cd and Ni-MH batteries, source term, vary with location and time. Calculated thermal characteristic of each battery is then compared to experimental results. The result shows that Ni-MH battery is thermally more suitable for space application and satellite.
机译:镍镉(Ni-CD)和镍金属氢化物(Ni-MH)电池的超快速充电能力,不同的性能,精细性能和高容量以及它们有限的重量和尺寸非常有吸引力,适用于包括无绳的许多应用和便携式设备,紧急和备用电源,电信设备,光伏系统,电动车,卫星和空间工艺和电厂支撑设备。然而,对温度的限制需要对这些电池进行细节热分析。电池的热行为由它们的边界条件,型和结构进行,更重要的是通过其化学反应实现。本研究的目的是探讨温度对Ni-CD和Ni-MH电池的热行为的影响。控制方程是经受非线性辐射边界条件和源术语的瞬态和非线性差分能量方程。为了解决瞬态和非线性控制差分能量方程,利用控制量的有限差分码。在控制鉴别能量方程的制剂中,Ni-Cd和Ni-MH性质(K,C,ρ)不是.Ncolstant和Ni-Cd和Ni-MH电池的化学特性,源期限,随位置而异和时间。然后将每个电池的热特性与实验结果进行比较。结果表明,Ni-MH电池热更适合空间应用和卫星。

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