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Rapid estimation of equilibrium water dew point of natural gas in TEG dehydration systems

机译:TEG脱水系统中天然气平衡水露点的快速估算

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Evaluation of a triethylene glycol (TEG) system involves first establishing the minimum triethylene glycol (TEG) concentration required to meet the outlet gas water dew point specification. In the present work, simple-to-use correlation, which is simpler than currently available models involving a large number of parameters, requiring more complicated and longer computations, has been developed for the rapid estimation of the water dew point of a natural gas stream in equilibrium with a TEG solution at various temperatures and TEG concentrations. This correlation can be used to estimate the required TEG concentration for a particular application or the theoretical dew point depression for a given TEG concentration and contactor temperature. Actual outlet dewpoints depend on the TEG circulation rate and number of equilibrium stages, but typical approaches to equilibrium are 6-11 °C. Equilibrium dewpoints are relatively insensitive to pressure and this correlation may be used up to 10 300 kPa (abs) with little error. The proposed correlation covers VLE data for TEG-water system for contactor temperatures between 10 °C and 80 °C and TEG concentrations ranging from 90.00 to 99.999 wt%. The average absolute deviation percent from the data reported in the literature is 0.5% which shows the excellent performance of proposed correlation. This simple-to-use correlation can be of immense practical value for the gas engineers to have a quick check on equilibrium water dew point of natural gas at various temperatures and TEG weight percents. In particular, personnel dealing with natural gas dehydration and processing would find the proposed approach to be user friendly involving no complex expressions with transparent calculations.
机译:对三甘醇(TEG)系统的评估涉及首先确定满足出口气体水露点规格所需的最低三甘醇(TEG)浓度。在当前的工作中,已经开发出比当前涉及大量参数的模型更简单,需要更复杂和更长的计算的,易于使用的相关性,用于快速估算天然气水的露点。在各种温度和TEG浓度下与TEG溶液保持平衡。该相关可用于估计特定应用所需的TEG浓度或给定TEG浓度和接触器温度的理论露点降低。实际出口露点取决于TEG循环速率和平衡级数,但达到平衡的典型方法是6-11°C。平衡露点对压力相对不敏感,这种相关性可用于高达10 300 kPa(abs)且误差很小。拟议的相关性涵盖了TEG-水系统的VLE数据,接触器温度在10°C至80°C之间,TEG浓度在90.00至99.999 wt%之间。与文献报道的数据相比,平均绝对偏差百分比为0.5%,这表明所提出的相关性具有出色的性能。这种简单易用的相关性对于气体工程师快速检查各种温度和TEG重量百分比下的天然气平衡水露点具有巨大的实用价值。特别是,从事天然气脱水和处理的人员会发现,所提出的方法是用户友好的,不涉及具有透明计算的复杂表达式。

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