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Prediction of bulk modulus and volumetric expansion coefficient of water for leak tightness test of pipelines

机译:管道密封性试验中水的体积模量和体积膨胀系数的预测

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To determine whether any pressure variation in pipeline hydrostatic test is a result of temperature changes or the presence of leaks, the calculation of pressure/temperature changes is required for test sections. In these calculations, bulk modulus and volumetric expansion coefficient of fresh or sea water must be taken into account. In this study, a simple-to-use correlation is developed to predict the bulk modulus and volumetric expansion coefficient of both fresh and sea water as a function of temperature and pressure. The proposed correlation helps to cover the bulk modulus and volumetric expansion coefficient of both fresh and sea water for temperatures less than 50℃ (40℃ for sea water) as well as pressures up to 55,000 kPa (550 bar). The results can be used in follow-up calculations to determine whether any pressure variation in pipeline hydrostatic test is a result of temperature changes or the presence of leaks. The proposed correlation showed promising results with average absolute deviations for volumetric expansion coefficient and bulk modulus of water being around 0.58% and 0.08% respectively. The novel correlation is easy to use and will prove to be of immense value for project engineers to test the critical limits accurately.
机译:为了确定管道静水压试验中的任何压力变化是温度变化的结果还是泄漏的存在,需要对试验段进行压力/温度变化的计算。在这些计算中,必须考虑淡水或海水的体积模量和体积膨胀系数。在这项研究中,开发了一种易于使用的相关性来预测淡水和海水的体积模量和体积膨胀系数随温度和压力的变化。所提出的相关性有助于涵盖温度低于50℃(海水为40℃)和压力高达55,000 kPa(550 bar)时淡水和海水的体积模量和体积膨胀系数。该结果可用于后续计算中,以确定管道静水压测试中的任何压力变化是温度变化的结果还是泄漏的存在。所提出的相关性显示出令人鼓舞的结果,水的体积膨胀系数和体积模量的平均绝对偏差分别约为0.58%和0.08%。这种新颖的相关性易于使用,并且对于项目工程师准确地测试关键极限具有巨大的价值。

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