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Temperature and Volumetric Fraction Measurements in a Hot Gas Laden With Water Droplets

机译:带有水滴的热气中的温度和体积分数测量

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Two temperatures can be detected in a hot gas laden with water droplets. The lower one is the temperature read by a sensor immersed in the flow. This measurement is affected by significant evaporative cooling resulting in readings much below the real gas temperature. The higher one is the temperature of the gas. The difference between these two temperatures is proportional to the water volumetric fraction in the flow. On this basis, a new technique for the measurement of the water volumetric fraction is proposed. The results are compared with a conventional measurement technique based on optical methods. A novel approach to the gas temperature measurement is also introduced. The, sensing device is kept at temperatures exceeding the Leidenfrost transition and therefore it is insensitive to the presence of the water droplets. Independent measurement techniques developed at the Evaporative Cooling Sensor Accuracy Test (ECSAT) facility provide the data to validate the measurements obtained with the Above Leidenfrost Temperature' and Evaporative Cooling (ALTEC) sensor.
机译:在充满水滴的热气体中可以检测到两个温度。较低的是浸入流中的传感器读取的温度。大量的蒸发冷却会影响该测量,导致读数远低于实际气体温度。较高的是气体的温度。这两个温度之间的差异与流量中的水体积分数成正比。在此基础上,提出了一种测量水体积分数的新技术。将结果与基于光学方法的常规测量技术进行比较。还介绍了一种新颖的气体温度测量方法。该传感设备保持在超过莱顿弗罗斯特转变温度,因此对水滴的存在不敏感。蒸发冷却传感器精度测试(ECSAT)设施开发的独立测量技术可提供数据,以验证使用“高于莱顿弗罗斯特温度”和蒸发冷却(ALTEC)传感器获得的测量结果。

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