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A STATISTICAL ANALYSIS OF TEMPERATURE OSCILLATIONS ON A FLAT-PLATE OSCILLATING HEAT PIPE WITH TESLA-TYPE CHECK VALVES

机译:带有TESLA型止回阀的平板式振荡热管温度振荡的统计分析

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Steady-state, oscillatory temperature signals occurring on the wall of two flat-plate oscillating heat pipes (FP-OHP) – one with Tesla-type check valves and another without – were analyzed using statistical methods in order to quantify and determine oscillating behavior associated with flow rectification.  Using the Expectation-Maximization algorithm, a probability density function (PDF) governing the temperature signal was found to be multi-Gaussian and dependent on heat input and heat pipe region for both FP-OHPs investigated.  Results further indicate that the inherent flow rectification within the TV FP-OHP provides for an evaporator temperature signal with a less heat-dependent, higher-kurtosis PDF and, at higher heat inputs, a higher: Pearson correlation coefficient and Shannon entropy.  These results provide a unique means to quantify the pseudo-random feature of oscillatory temperature occurring on an OHP.
机译:使用统计方法分析了两个平板振荡热管(FP-OHP)的壁上出现的稳态振荡温度信号(一个带有特斯拉式止回阀,另一个没有特斯拉式止回阀),以便量化和确定与之相关的振荡行为。进行流量整流。使用期望最大化算法,控制温度信号的概率密度函数(PDF)被发现是多高斯的,并且取决于所研究的两种FP-OHP的热输入和热管区域。结果还表明,TV FP-OHP内在的固有整流功能可提供蒸发器温度信号,其具有较少的热依赖性,峰度PDF,而在较高的热量输入下,蒸发器温度信号也更高:皮尔逊相关系数和香农熵。这些结果提供了一种独特的方法来量化OHP上发生的振荡温度的伪随机特征。

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