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Numerical simulation and simplified calculation method for heat exchange performance of dry air cooler in natural gas pipeline compressor station

机译:天然气管道压缩机站干燥空气冷却器热交换性能的数值模拟及简化计算方法

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In view of the complicated heat transfer calculation for air coolers and the difficulty of directly calculating the exit temperature of natural gas in a compressor station, taking the dry air cooler of model GP12?×?3‐6‐258‐13.0S‐S‐23.4/DR‐Ia configured in the West‐East Natural Gas Pipeline II as an example, a three‐dimensional simplified model of the air cooler is established. The model is used to simulate a temperature flow field of a dry air cooler‐finned tube based on Fluent flow field analysis software. This paper studies the cooling effect of the dry air cooler‐finned tube on high‐temperature and high‐pressure natural gas at compressor outlet. By comparing and analyzing the relationships among natural gas mass flow, inlet air temperature, inlet natural gas temperature, and outlet natural gas temperature for an air cooler, the formula of temperature drop of dry air cooler to natural gas is fitted, and the fitting formula is verified by field operation data. The results show that the average error between the fitting results and the actual data is less than 1.5%, which proves the correctness of the fitting formula and greatly simplifies the heat transfer calculation process for air coolers.
机译:鉴于空气冷却器的复杂传热计算和直接计算压缩机站中天然气出口温度的难度,采用模型GP12的干燥空气冷却器×3-6-258-13.0s-s- 23.4 / DR-IA在西部天然气管道II中配置为例,建立了空气冷却器的三维简化模型。该模型用于基于流畅的流场分析软件模拟干燥空气冷却器翅片管的温度流场。本文研究了干燥空气冷却器翅片管对压缩机出口高温和高压天然气的冷却效果。通过对空气冷却器的天然气质量流量,入口空气温度,入口天然气温度和出口天然气温度进行比较和分析,配合了干燥空气冷却器的温度下降,配合,配合式通过现场操作数据验证。结果表明,拟合结果和实际数据之间的平均误差小于1.5%,证明了配合配方的正确性,大大简化了空气冷却器的传热计算过程。

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