论述了制气过程中涡轮除渣器机组制冷量选择的基本原理

IF 1.7 0 ENGINEERING, PETROLEUM SOCAR Proceedings Pub Date : 2022-12-30 DOI:10.5510/ogp20220400792
G. G. Ismailov, Y. Z. Alakparov, R. Ismailov
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引用次数: 0

摘要

在凝析气田,低温分离工艺主要用于天然气的初级处理。气准备系统中井产品的冷却是通过节流来实现的。随着储层压力的降低,获得的能量也随之减少。这就恶化了制备气体的条件。因此,需要使用额外的能源。对气体处理厂运行方式的分析表明,气体膨胀过程中获得的能量是可以合理利用的。计算表明,在绝热膨胀过程中,涡轮阻垢器出口处的气体温度为水和碳氢化合物提供了所需的露点。关键词:天然气;冷凝物;turbodetander;气体膨胀;广食性的;绝热;寒冷的生产力;露点。
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About rationale for the selection of the cooling capacity of the turbodetander unit in the process of gas preparation
In gas condensate fields, low-temperature separation process is mainly used for primary processing of gas. Cooling of well products in gas preparation systems is achieved by throttling them. As the reservoir pressure decrease, the amount of energy obtained decreases. This worsens the conditions for the preparation of gases. Therefore, raises a need to use additional energy sources. Analysis of the operating modes of gas treatment plants has shown that the energy obtained during the expansion of gas can be used rationally. Calculations have shown that the gas temperature at the outlet of turbodetander units during adiabatic expansion provides the required dew point for water and hydrocarbons. Keywords: gas; condensate; turbodetander; gas expansion; polytrophic; adiabatic; cold productivity; dew point.
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SOCAR Proceedings
SOCAR Proceedings ENGINEERING, PETROLEUM-
CiteScore
3.00
自引率
82.40%
发文量
0
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