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In order to improve the conductivity, strength, corrosion resistance and durability of the tracer wire, multi-strand (or single-strand) copper wire or waste communication optical cable with a cross-sectional area of more than 2.5mm2 should be selected. When laying, try to keep the tracer line at the top of the pipe, peel off the insulation layer of the wire joint at the branch, twist the copper core together for several turns, and then wrap the joint with insulating tape to maintain good conductivity. At the dew point of the trace line, a detection pile (detection well) can be set to lead the trace line into the test pile for convenient detection and positioning. For the gas PE pipeline laid by directional drilling, the communication optical cable with higher strength should be selected, and the strength should be increased by relying on the internal main steel wire to avoid being pulled off during construction, resulting in the inability to detect and locate.
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Tracer method
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1. Ground signs
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Mark the corresponding positions on the ground, bury signs, sign bricks, sign stickers, etc. This method is intuitive and easy to find, but is limited by the ground environment, such as it is difficult to set on the expressway. In case of road maintenance or demolition, a large number of signs will be lost. At this stage, the above marks are used for ground markers.
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2. Equipment detection
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Once the ground signs are lost, the equipment has to be used for underground pipeline detection. For metal pipes, the metal pipe detector (a device that applies electrical signals to the pipes and then tracks the direction of electrical signals) is generally used for routing and positioning. This kind of equipment works well in places with few underground pipelines, no strong magnetism and strong electricity, but for areas with dense pipelines (such as courtyards) or pipelines with poor conductivity (such as ductile iron pipes), the detection efficiency will be greatly reduced. PE pipe is not conductive at all, so this technology cannot be used. We have also tried other equipment, such as geomagnetic imager and underground cavity detector, but it has not been applied in Bazhou Company, and the effect cannot be determined temporarily. In addition, it is understood that there is no equipment on the market that can achieve the desired effect when detecting PE pipes.
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3. Metal film tracer band
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Lay a metal film tracer tape above the gas PE pipeline, and then use a pipe detector for detection. The metal film in the tracer band has conductivity, which can theoretically reflect the characteristics of the metal tube. However, in fact, the detection effect is very poor because of the small cross-sectional area of the metal film, the poor conductivity, and the large interference of the surrounding metal tube, which can only be detected in the place with small interference and very close to the ground. In addition, during the radiation process, a connection should be made every 100 meters. If the connection is not correct, the tracer zone will be broken due to soil settlement in the later use process, which can not be detected.
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4. Metal tracer line
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In order to improve the conductivity of the tracer object, we have used the metal tracer line to replace the metal film tracer belt. Because the core of the tracer line is copper and has a certain cross-sectional area, its conductivity is significantly better than that of the thin film tracer belt, especially when it is just buried, the detection effect is better. However, with the extension of time, the tracer line exposed a lot of problems. A. Once the tracer line has a breakpoint, such as being cut off during construction, natural corrosion, and not firmly connected, it cannot be detected from the breakpoint back. B. Compared with other underground pipelines or lines, the conductivity of the tracer line is not as good as that of them, so the detection signal is too weak to confuse the pipeline position. Moreover, the tensile property is poor, and it cannot be laid in directional drilling crossing.
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5. Waste communication optical cable
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In view of the shortcomings of the metal tracer line, the waste communication optical cable can better solve this problem. Communication optical cable is composed of cable core and outer sheath composed of several (core) optical fibers (generally from several to several thousand cores). There are strengthening members in the optical cable to bear the external mechanical load, so as to protect the optical cable from the impact of various external mechanical forces, thus improving the durability of the optical cable. Especially in directional drilling crossing construction, the strong load of optical cable can be laid completely. At the interval of 300 to 500 meters, test piles shall be buried, and optical cables shall be led into the test piles to facilitate future detection and positioning. The disadvantage of optical cable is that its conductivity is lower than that of metal tracer line, and the detection effect of disturbed area is poor.
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6. Underground pipeline electronic marking system
µç×Ó±ê¼Çϵͳ(ElectronicMark System).ÔçÆðÔ´ÓÚÃÀ¹ú£¬ÓÉ3M¹«Ë¾Îª¹«¹²ÉèÊ©Ó¦Óöø¿ª·¢£¬ÑÏ¿á×ñÕÕÃÀ¹ú¹«¹²ÀͶ¯Ð»á(APWA)Öƶ©µÄµØÏÂÉèÊ©±ê¼ÇµÄ¹æ·¶£¬ÓÃÓÚ¶ÔÏÖ³¡ÉèÊ©µÄ¶¨Î»¡£ÆäÊÂÇéÔÀíÊǽ«µç×Ó±ê¼ÇÆ÷ÂñÉèÓڹܵÀÉÏ·½£¬Ã¿¸öµç×Ó±ê¼ÇÆ÷ÄÚ¶¼´æÓÐÒ»¸ö..µÄʶ±ð´úÂ룬ÓÌÈçÿСÎÒ˽È˵ÄÉí·ÝÖ¤ºÅÂëÒ»Ñù¡£µç×Ó±ê¼ÇÆ÷ÄÚ¿ÉÒÔ×Ô½ç˵Öü´æ¹ÜµÀµÄÖ÷ÒªÐÅÏ¢£¬ÈçÏà¶ÔλÖá¢ÂñÉî¡¢¹Ü¾¶¡¢¹Ü²Ä¡¢¹ÜµÀѹÁ¦¡¢·óÉèÈÕÆڵȡ£ÔÚµØÃæÉÏʹÓö¨Î»×°±¸(̽²âÒÇ)¶¨Î»µç×Ó±ê¼ÇÆ÷µÄλÖ㬲¢¶ÁÈ¡´¢
Electronic Mark System. It originated in the United States and was developed by 3M Company for the application of public facilities. It strictly follows the specifications of underground facility signs formulated by the American Association of Public Workers (APWA) for the positioning of on-site facilities. Its working principle is to bury the electronic marker above the pipeline, and each electronic marker has a The identification code of is the same as the ID number of each person. The electronic marker can customize and store important information of the pipeline, such as relative position, buried depth, pipe diameter, pipe material, pipe pressure, laying date, etc. Use positioning equipment (detector) on the ground to locate the position of electronic marker and read