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首页> 外文期刊>International Journal of Automotive Technology >EFFECTS OF WATERY VAPOR CONCENTRATION ON DROPLET EVAPORATION IN HOT ENVIRONMENT
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EFFECTS OF WATERY VAPOR CONCENTRATION ON DROPLET EVAPORATION IN HOT ENVIRONMENT

机译:高温环境中水蒸气浓度对液滴蒸发的影响

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A study has been conducted to clarify the effect of watery vapor concentration in hot ambient on droplet evaporation. Droplets of water, ethanol, n-hexadecane and n-heptane were used in this experimental study. Ambient conditions are fixed at 470 K in temperature, 0.1 MPa in pressure and 2 m/s in velocity of ambient air. Watery vapor concentration was changed 0%~40% by 10% by add water to air. To obtain the time histories of droplet diameter after exposed in ambient, a suspended droplet in hot and humid ambient stream was synchronized with a back flash light, and enlarged droplet images were taken by a CCD camera. The evaporation rate constant of water droplet decreases slightly with the vapor concentration because diffusion velocity reduction of droplet vapor occurs on the surface. The values of ethanol and n-heptane droplet actively increase by effect that water from condensation of vapor flows into the droplet. The evaporation rate constant of n-hexadecane which has higher boiling point than water increases within around 30% of the concentration.
机译:已经进行了一项研究以阐明热环境中水蒸气浓度对液滴蒸发的影响。在该实验研究中使用了水滴,乙醇,正十六烷和正庚烷。环境条件固定为温度470 K,压力0.1 MPa和环境空气速度2 m / s。通过向空气中添加水,将水蒸气浓度从10%变为0%〜40%。为了获得暴露在环境中后液滴直径的时间历程,将热和潮湿的环境流中的悬浮液滴与反向闪光灯同步,并通过CCD相机拍摄放大的液滴图像。水滴的蒸发速度常数随蒸汽浓度而略有降低,因为在表面上发生了水滴蒸汽的扩散速度降低。乙醇和正庚烷液滴的值会因水蒸气凝结的水流入液滴而有效地增加。沸点比水高的正十六烷的蒸发速率常数在浓度的30%左右增加。

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