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Thermal and mechanical properties of nitrate thermal storage salts in the solid-phase

机译:固相硝酸盐蓄热盐的热力学性能

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Implementation of molten salt compounds as the heat transfer fluid and energy storage medium provides specific benefits to energy collection and conversion. Nitrate salts have been identified as a strong candidate for energy transfer and storage and have been demonstrated for use in these applications over time. As nitrate salts have solidification temperatures above ambient, concern for recovery from salt freezing events has instigated efforts to understand and predict this behavior. Accurate information of salt property behavior in the solid-phase is necessary for understanding recovery from a freeze event as well as for phase change thermal energy storage applications. Thermal and mechanical properties for three representative salts (solar salt, HITEC salt, and a Na-K-Li-Ca nitrate sa spanning the range of liquidus temperatures from approximately 90-240 ℃), have been obtained. These properties include: specific heat, coefficient of thermal expansion, thermal conductivity, latent heat of fusion, compressive strength, tensile strength, Young's modulus and Poisson's ratio. Specific heat, thermal conductivity and latent heat of fusion were measured using differential scanning calorimetry. Temperature was not observed to have a significant effect on tensile strength using an indirect tensile test (Brazilian test). Peak stress and Young's modulus (both from unconfined compressive strength testing) were shown to decrease while Poisson's ratio increased with increasing temperature.
机译:熔融盐化合物用作传热流体和能量存储介质的实施为能量收集和转换提供了特殊的好处。硝酸盐已被确认为能量转移和存储的强大候选者,并已被证明可长期用于这些应用中。由于硝酸盐的凝固温度高于环境温度,因此从盐冻结事件中恢复的关注促使人们努力理解和预测这种行为。固相中盐性质行为的准确信息对于了解从冻结事件中恢复以及相变热能存储应用非常必要。获得了三种代表性盐(太阳盐,HITEC盐和Na-K-Li-Ca硝酸盐;在液相线温度范围从约90-240℃开始)的热和机械性能。这些性质包括:比热,热膨胀系数,导热率,熔融潜热,抗压强度,抗张强度,杨氏模量和泊松比。使用差示扫描量热法测量比热,热导率和熔融潜热。使用间接拉伸试验(巴西试验),未观察到温度对拉伸强度有显着影响。峰值应力和杨氏模量(均来自无边压缩强度测试)显示随着温度升高而降低,而泊松比则升高。

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