1.地面標(biāo)志
1. Ground signs
在地面上標(biāo)出相應(yīng)的位置,嵌入標(biāo)牌、標(biāo)牌磚、標(biāo)牌貼紙等。這種方式直觀易找,但受限于地面環(huán)境,比如在快速道路上難以設(shè)置。在道路維修或拆除的情況下,會(huì)丟失大量的標(biāo)志。在這個(gè)階段,地面標(biāo)記都使用上述標(biāo)志。
Mark the corresponding positions on the ground and embed signs, sign bricks, sign stickers, etc. This method is intuitive and easy to find, but it is limited by the ground environment, for example, it is difficult to set up on fast roads. In the case of road maintenance or demolition, a large number of signs will be lost. At this stage, the above signs are used for ground marks.
2.設(shè)備檢測(cè)
2. Equipment inspection
一旦地面標(biāo)志丟失,該設(shè)備必須用于地下管道檢測(cè)。對(duì)于金屬管道,一般使用金屬管道探測(cè)器(一種將電信號(hào)施加到管道上,然后跟蹤電信號(hào)方向的設(shè)備)進(jìn)行布線和定位。這種設(shè)備在地下管線少、無(wú)強(qiáng)磁強(qiáng)電的地方工作良好,但對(duì)于管線密集的地方(如庭院)或?qū)щ娦暂^差的管線(如球墨鑄鐵管),檢測(cè)效率會(huì)大大提高減少。
Once the ground signs are lost, the equipment must be used for underground pipeline detection. For metal pipes, metal pipe detectors (a device that applies an electrical signal to the pipe and then tracks the direction of the electrical signal) are generally used for wiring and positioning. This equipment works well in places with few underground pipelines and no strong magnetic and electric fields, but for places with dense pipelines (such as courtyards) or pipelines with poor conductivity (such as ductile iron pipes), the detection efficiency will be greatly improved and reduced.
PE管根本不導(dǎo)電,所以不能用這種技術(shù)。我們還嘗試了其他設(shè)備,如地磁成像儀、地下洞穴探測(cè)器等,但尚未在霸州公司投入實(shí)際應(yīng)用,效果暫時(shí)無(wú)法確定。另外,據(jù)了解,目前市場(chǎng)上還沒(méi)有檢測(cè)PE管時(shí)能達(dá)到理想效果的設(shè)備。
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 cave detector, but they have not been put into practical application 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.
3.金屬薄膜示蹤帶
3. Metal film tracer tape
在PE管上方鋪設(shè)金屬膜追蹤膠帶,然后用探針探測(cè)。示蹤帶中的金屬膜具有導(dǎo)電性,理論上可以體現(xiàn)金屬管的特性,但實(shí)際上由于金屬膜的截面積太小,導(dǎo)電性不好,受到周圍金屬管道的極大干擾,導(dǎo)致檢測(cè)效果很差。只能在干擾很小且離地面很近的地方才能檢測(cè)到。而且,在輻射過(guò)程中,每100米需要連接一次。如果連接不當(dāng),示蹤帶在后期使用過(guò)程中會(huì)因土壤沉降而斷裂,從而無(wú)法檢測(cè)到。
Lay a metal film tracking tape over the PE pipe, and then probe it with a probe. The metal film in the tracer band has conductivity, which can theoretically reflect the characteristics of the metal pipe, but in fact, because the cross-sectional area of the metal film is too small, the conductivity is not good, and it is greatly disturbed by the surrounding metal pipes, resulting in poor detection effect. It can only be detected where the interference is very small and close to the ground. Moreover, in the process of radiation, it needs to be connected every 100 meters. If the connection is improper, the tracer belt will break due to soil settlement during later use, so it cannot be detected.
4.金屬示蹤劑
4. Metal tracer
為了提高示蹤物的導(dǎo)電性,我們使用金屬示蹤線代替金屬膜示蹤條。由于示蹤線的芯線為銅,具有一定的截面積,其導(dǎo)電性明顯優(yōu)于薄膜示蹤帶,尤其是剛埋入地下時(shí),檢測(cè)效果更好。但隨著時(shí)間的推移,示蹤線暴露了一個(gè)很大的問(wèn)題。
In order to improve the conductivity of the tracer, we use metal tracer wire instead of metal film tracer strip. Because the core wire of the tracer wire is copper and has a certain cross-sectional area, its conductivity is obviously better than that of the thin-film tracer belt, especially when it is just buried underground, the detection effect is better. But with the passage of time, the tracer line exposed a big problem.
示蹤線一旦出現(xiàn)斷點(diǎn),如施工時(shí)被切斷、自然腐蝕、連接時(shí)連接不牢等,都無(wú)法從斷點(diǎn)處檢測(cè)到。灣。與其他地下管道或線路相比,示蹤線的導(dǎo)電性不如它們,因此檢測(cè)信號(hào)太弱,從而混淆了管道的位置。另外,抗拉強(qiáng)度差,定向鉆時(shí)不能鋪設(shè)。
Once there is a breakpoint in the tracer line, such as being cut off during construction, natural corrosion, weak connection during connection, etc., it cannot be detected from the breakpoint. Bay. Compared with other underground pipelines or lines, the conductivity of the tracer line is not as good as them, so the detection signal is too weak, thus confusing the location of the pipeline. In addition, due to poor tensile strength, it cannot be laid during directional drilling.
5、廢棄通信光纜
5. Abandoned communication optical cable
針對(duì)金屬示蹤劑的缺點(diǎn),廢棄的通信光纜可以更好地這個(gè)問(wèn)題。通信光纜是由多根(芯)光纖(通常從幾芯到幾千芯)組成的光纜芯和外護(hù)套組成。光纜內(nèi)有加強(qiáng)件來(lái)承受外部機(jī)械載荷,以保護(hù)光纖免受各種外部機(jī)械力的影響,從而保證光纜的耐用性。
In view of the shortcomings of metal tracers, abandoned communication optical cables can better solve this problem. Communication optical cable is composed of optical cable core and outer sheath composed of multiple (core) optical fibers (usually from several cores to thousands of cores). There are reinforcements in the optical cable to bear external mechanical loads, so as to protect the optical fiber from various external mechanical forces, so as to ensure the durability of the optical cable.
特別是在定向鉆孔施工中,光纜強(qiáng)大的承載力可以保證完全鋪設(shè)。每隔300米到500米,埋設(shè)探測(cè)樁,將光纜引探測(cè)樁,方便日后探測(cè)定位。光纜的缺點(diǎn)是電導(dǎo)率低于金屬示蹤劑,對(duì)受干擾區(qū)域的檢測(cè)效果較差。
Especially in the directional drilling construction, the strong bearing capacity of optical cables can ensure the complete laying. Every 300 to 500 meters, the detection pile shall be buried, and the optical cable shall be led to the detection pile to facilitate the detection and positioning in the future. The disadvantage of optical cables is that the conductivity is lower than that of metal tracers, and the detection effect of disturbed areas is poor.
6、地下管線電子標(biāo)牌系統(tǒng)
6. Underground pipeline electronic sign system
地埋示蹤線廠家認(rèn)為它的工作原理是電子標(biāo)記埋在管道上方,每個(gè)電子標(biāo)記都有一個(gè)識(shí)別碼,與每個(gè)人的身份證號(hào)碼相同。管道的重要信息可以定制并存儲(chǔ)在電子標(biāo)記器中,如相對(duì)位置、埋深、管徑、管道材質(zhì)、管道壓力、鋪設(shè)日期等。使用地面定位設(shè)備(探測(cè)器)定位電子標(biāo)記的位置并讀取存儲(chǔ)的信息。
The manufacturer of buried tracer line believes that its working principle is that electronic marks are buried above the pipeline, and each electronic mark has an identification code, which is the same as everyone's ID number. Important information of the pipeline can be customized and stored in the electronic marker, such as relative position, buried depth, pipe diameter, pipeline material, pipeline pressure, laying date, etc. Use the ground positioning equipment (detector) to locate the position of the electronic mark and read the stored information.
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