冀東油田伴生氣處理工藝技術(shù)研究
[Abstract]:With the development of oil field, the composition of associated gas, flow rate, pressure and other temperament conditions have changed greatly, which poses a higher challenge to the adaptability of the treatment process. The main process of treating associated gas in domestic oilfields is direct heat transfer process (Direct Heat Exchange Process, DHX), the treatment process is simple and the heat transfer network is simple. It is urgent to develop an efficient condensate recovery process suitable for oil field associated gas, to improve the adaptability of the unit to different working conditions and the overall economic benefit of the unit, and to realize the efficient and economical operation of the unit, which has a very important practical significance. Based on the investigation of typical condensate recovery processes at home and abroad, the advantages and disadvantages of representative processes are analyzed in depth, and the improvement measures and development directions of new processes abroad are summarized. The main reasons for the low propane recovery rate and the operating condition of the oil and gas treatment unit were investigated. The characteristics of conventional DHX process are analyzed, and the optimal pressurization scheme is determined. Based on the application of two-stage separation and the addition of deethane tower top reflux tank, the process is improved. The scheme of liquid phase intake contact tower for low temperature separator and the scheme of adding propane cooler to the top of deethane tower are put forward, and the improved scheme of adding propane cooler to the top of deethane tower is determined. By using the heat exchange network simulation technology based on the pinch theory, the heat transfer network model of the multi-stream cooling box is established, and the optimization direction of the heat transfer network of the multi-stream cooling box is defined. Through the improvement of the heat transfer sequence in the cooling box, the optimization of the heat transfer sequence is obtained. An efficient process suitable for oil field associated gas, low temperature absorption and reflux process (The Low Temperature Absorption Reflow Process, LRP).), is put forward. Based on the theory of jiong analysis, the rationality of heat transfer network of multi-stream cooling box is evaluated, and the heat transfer of each heat exchanger in the cooling box is discussed. The efficiency is over 95%, which further verifies that the LRP process heat transfer network is optimized to the maximum extent. The adaptability of LRP process to the composition of feedstock gas and pressurization pressure is analyzed. The LRP process has strong adaptability to the change of gas condition of raw gas. LRP process is especially suitable for propane recovery of associated gas in oil fields with rich gas quality. When the condensate gas with poor temperament (C1/C2 > 9) is treated, the cooling capacity of the system is sufficient to cancel the deethane tower top propane cooler. In view of the problems existing in the oil and gas treatment unit of Haobu in Jidong Oilfield, the optimization scheme of process parameters and the scheme of technological process improvement are put forward. Based on the premise of not changing the process flow and equipment, the process parameters are optimized by using the process optimization technology, the influence of adjustable variables on the optimization objective is analyzed, and the optimization model of process parameters is established. The control measures of process parameters are put forward. The technological process was improved based on the developed LRP process. On the basis of investigation and research to increase the market price of the equipment, the two schemes are compared and evaluated. By using the improved scheme of LRP process, the propane recovery rate is increased to 98.6%, the unit stability is improved, and the unit income can be increased by 20.833 million yuan per year. Economic benefits are considerable.
【學(xué)位授予單位】:西南石油大學(xué)
【學(xué)位級別】:碩士
【學(xué)位授予年份】:2015
【分類號】:TE64
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