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Characterization of a jacket steam injector to avoid water hammer.

机译:夹套蒸汽喷射器的特征在于避免水锤。

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Steam injection is an effective method of direct-contact heating, but it is subject to condensation-induced water hammer (CIWH). CIWH can create loud noise, severe vibration, and pressure spikes sometimes sufficient to rupture pipes, fittings, or connected equipment. The objective of this study was to determine the boundary of operating conditions void of CIWH. That boundary was represented by the process liquid outlet temperature at water hammer initiation (TWH). The steam injector used in this study was a steam-jacketed tube with orifices drilled in the wall of the inner tube. Experiments were conducted by recycling water or sucrose solution through the steam injector so that the temperature increased slowly to the point of water hammer, which was detected by rapid fluctuations in water pressure. For the range of experiment conditions studied, the number of injector orifices and the differential pressure between steam and liquid were found to have small or no effects on TWH. Liquid flow rate and liquid pressure were found to be good predictors, and one equation based on those two variables gave R2=0.916 when the process liquid was water. When sucrose solution was used as the process liquid, TWH increased more than what could be attributed to increased boiling point temperature. Experiments with segmented flow operation indicated that the segmenting barriers did not substantially affect TWH.
机译:蒸汽注入是一种直接接触加热的有效方法,但会受到凝结水锤(CIWH)的影响。 CIWH会产生很大的噪音,剧烈的振动和压力峰值,有时甚至足以使管道,配件或连接的设备破裂。这项研究的目的是确定没有CIWH的操作条件的边界。该边界由水锤启动时的过程液体出口温度(T WH )表示。在这项研究中使用的蒸汽喷射器是一个带有蒸汽夹套的管,其内管壁上钻有孔口。通过将水或蔗糖溶液循环通过蒸汽注射器进行实验,以使温度缓慢升高至水锤点,这可通过水压的快速波动来检测。在所研究的实验条件范围内,发现喷孔的数量以及蒸汽和液体之间的压差对TWH影响很小或没有影响。发现液体流速和液体压力是良好的预测指标,当工艺液体为水时,基于这两个变量的一个方程式的R 2 = 0.916。当使用蔗糖溶液作为处理液时,T WH 的增加超过了沸点温度升高所引起的增加。分段流动操作的实验表明,分段屏障基本上不影响T WH

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