Submarine pipe comprising a sheath comprising a polypropylene block copolymer
A polypropylene block and underwater pipeline technology, which is applied in the pipeline system, pipeline protection, pipeline damage/wear prevention, etc., can solve the problem of sealing function loss and achieve good impact resistance
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Embodiment 1
[0164] Example 1: Swelling ratio of polypropylene in the presence of petroleum fluid at elevated temperature
[0165] Samples of different classes of polypropylene were weighed, then contacted with petroleum fluid Biofree EN 590 Diesel, and then weighed after a certain period of time in this fluid. The difference in mass before and after contact enables determination of the degree of swelling.
[0166] Table 1 compares and provides the swelling ratios (mass percent) of different classes of polypropylene in the presence of the petroleum fluid Biofree EN 590 Diesel.
[0167]
[0168] Table 1: Swell ratio of various polypropylenes in the presence of Biofree EN 590 diesel
[0169] These results show that the polypropylene block copolymers used in the sheathing of pipes according to the invention have a low swelling ratio in the presence of hydrocarbons at elevated temperatures.
Embodiment 2
[0170] Example 2: Resistance of polypropylene when severe pressure release
[0171] Several polypropylenes were saturated with gas at high temperature and pressure and then decompressed to atmospheric pressure (1 bar) at a depressurization rate of 70 bar / min similar to flexible pipe operation. The appearance of blisters on the polypropylene surface after this treatment was monitored (Table 2).
[0172]
[0173] Table 2: Occurrence of blistering on various polypropylene surfaces after severe pressure relief
[0174] These results show that the polypropylene block copolymer used in the jacket of the pipe according to the invention is capable of withstanding severe depressurization simulating a production shutdown.
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Abstract
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