Minor-diameter water draining and gas producing pipeline column
A gas production pipe and small-diameter technology, which is applied in the direction of drill pipe, casing, earthwork drilling and production, etc., can solve the problems of limited application and promotion, high price of coiled tubing, etc., to improve liquid carrying capacity, reduce overall weight, and restore gas well productivity Effect
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Embodiment 1
[0026] Gas wells with a well depth of less than 3,000 meters. Well Sudong A is 2991.5m deep, and the tubing is 2975m deep. Before the test, the oil pressure was 2.27MPa, the casing pressure was 8.85MPa, the oil casing pressure difference was 6.58MPa, and the average daily gas production was 0.43×10 4 m 3 / d. Since the well depth is less than or equal to 3000m, 45# carbon steel seamless pipes (1) and their joints (2) are used in the whole well section, and run in by connecting single pipes, see figure 1 .
[0027] The depth H of the tubing string is 2975m. Since the tubing is fixed by free suspension, the tensile load of the tubing at the wellhead suspension is the largest. According to formula 2, the maximum tensile load is:
[0028] σ max = H * W pe * 9.8 S (Formula 3)
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Embodiment 2
[0033] Gas wells with a well depth greater than 3,000 meters. Well Su B is 3349m deep, 3320m down the tubing, the oil pressure before the test was 1.15MPa, the casing pressure was 7.12MPa, the casing pressure difference was 5.97MPa, and the average daily gas production was 0.38×10 4 m 3 / d. Since the well depth is greater than 3000m, the pipe string is lowered in combination. The upper part of the wellbore is made of 45# carbon steel seamless pipe (1) and its joint (2), and the lower part is made of 5083 aluminum alloy seamless pipe (1) and its joint (2). ), use the single root method to download, refer to figure 1 .
[0034] The depth H of the tubing string is 3320m. According to formula 2, the maximum tensile load of the wellhead tubing is:
[0035] σ max = ( H 1 * W p...
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