
是什么讓企業在動蕩時代站穩腳跟?墨守成規總歸不是妙計。
來自 | E&P
編譯 | 二丫 影子
一個行業的發展離不開方法的改進和效率的提高。而近些年來,石油行業的繁榮主要得益于先進技術和先進工具的大量應用,從而造就了運營效率的指數式增長。
頁巖氣領域近幾年的技術進步以及效率的提高讓人印象深刻,而這種技術革新還會繼續下去。對于運營商來說,這些新技術的應用與否很可能決定其成敗。美國頁巖氣之父George Mitchell帶頭推動了水力壓裂法的使用,這項突破性技術帶來了美國2010年以來的頁巖氣繁榮。頁巖氣開采被認為是本世紀迄今為止最為偉大的創新,但事實上這并不是一項新技術,而是由上世紀90年代末的技術發展而來。這種技術發展開創了一個嶄新的頁巖時代,同時也推動了美國油氣行業的革命。
新涂層應用強化二氧化硅粉塵控制

未經處理的壓裂砂(左)與用A處理過的壓裂砂(右)相比,顯示出更佳的粉塵控制
業內仍然在持續關注水力壓裂中的二氧化硅粉塵排放問題。佛羅里達的一家公司與業內專家合作,運用50多年的涂料專業只是,采用涂料應用系統,研發出一種高效的硅粉控制技術。
作為該公司的新一代專利型硅粉控制支撐劑涂層技術,A能夠將二氧化硅粉塵量減少99%,符合職業安全和衛生管理局新規定的限值和標準。當應用于壓裂砂時,A可通過水力壓裂供應鏈,提供連續的二氧化硅防塵保護。該技術可實現從砂廠到井口的持續保護,簡化壓裂砂的物流運輸,并實現快速跟蹤。
A易于應用,無需干燥或固化,可以各種壓裂流體兼容,同時也不會對油井性能產生不利影響。使用SandTec涂層技術,作業人員再也無需設置、拆除或維護機械除塵控制系統。
新型水泥漿體系:強度更高,密度更低

N是一款低硅酸鹽含量的水泥漿體系,相對于常規體系,N的密度更低,但抗壓性能、彈性和抗剪切力都更強。N是D公司的最新產品之一,合理結合了硅酸鹽水泥與特殊材料的物化性質。N是第一款可同時提高環空液壓密封性能和彈性的低硅酸鹽含量水泥漿體系。
通常,固井水泥漿的密度越大,抗壓性能越強,水泥密度降低,相關性能也會隨之降低。然而,從1.2lb/gal以上(含1.2lb/gal)水泥漿體系對比中可以看出,N體系的性能更加優良,可將抗剪切強度提高79%,抗壓強度提高11%,彈性提高15%,抗壓強度與楊氏模量比值提高30%。該體系與2016年初開始商業推廣,截至到目前,已應用了超過一百萬桶泥漿,為90多家用戶提供了優質服務。
新型生物可降解壓裂球,橋塞溶解更快

L公司的水力壓裂/完井解決方案可得到更長的水平長度
生物可降解壓裂球和橋塞能夠在幾天或幾周之內即可降解,油氣行業一直在努力尋找這類技術。L公司研發出了一種微生物溶液,可在一個很大的溫度范圍內,以更快的速度溶解聚乳酸聚合物和可分解封隔器,從而更快地實現產量上升和創收。
另外,L還在開展有關水力壓裂和完井的解決方案,如原微生物表活劑生產、壓裂損傷修復以及用作攜砂液的聚合物,這些解決方案都可以有效增大油井的水平長度。
可溶解合金提高滑套和PNP作業靈活性

M公司推出了S可溶鎂合金,具有高強度、高延展性等性能,在鹽溶液或淡水中具有可控的溶解表現。S合金可用于制作滑套,以及PNP作業中的壓裂球。S合金廣泛的應用范圍,使設計師、油服公司和作業人員都能夠確信,這一材料在井下可以進行可預測的可靠工作。使用S合金,可降低未被腐蝕的鎂上返到地面的風險。
新型樹脂材料可承受20,000psi高壓

T公司是一家高性能聚合物生產商,可為內管注水泥設備提供一種新型的非金屬復合材料。P是一種新型高強度熱固性樹脂,可在橋塞、閥門和給裝外罩中的鋁。該產品可承受超過20,000psi的強度,并具有204℃(400℉)的額定溫度。這種材料易于加工和鉆碎,速度比鋁快20倍,可節省出數小時的鉆機時間成本。
與系列中的其他產品一樣,P可以在高輸送量的條件下,使用低成本設備實現模制。新型高強度熱固性樹脂進一步豐富了T公司的低阻力和耐磨聚合物產品系列。
固體油溶性示蹤劑優化生產分析
在原油開采中,油溶性示蹤劑(OST)多用于生產分析,其分析原理主要來源于,在采出液中分離得到的化學示蹤劑能夠精確反應井下開采狀況。一般認為,OST回收率與實際生產狀況的比例關系是化學示蹤劑準確性的關鍵。眾所周知,任何泵入油藏的液體都會對油藏壓力產生影響,進而會造成油藏生產數據的波動。而從實際生產狀況來看,由于注入OST與壓裂液的量相比非常少,并且會迅速排出井筒,所以通過OST獲得的油藏歷史數據并不能長期適用。雖然OST的這一缺點已存在多年,但并沒有出現新的技術來改善這一問題,油氣行業無奈選擇了忍受。
為了解決這一問題,目前已有34種OST產品投入了完井和重復壓裂市場,在壓裂作業中,這些固體微粒OST在混合桶內與支撐劑混合后,一并被注入油藏。在到達指定位置后,OST會在壓裂裂縫內固定,避免了壓裂作業中由于壓力波動造成OST反排出油藏的問題。在壓裂作業完成后,只有當含有OST的固體顆粒與油接觸后才會釋放化學示蹤劑。通過示蹤劑的緩釋,可顯著延長OST的使用時間。
下期關鍵詞:壓裂工具
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NEW COATING APPLICATION ENHANCES SILICA DUST CONTROL
Silica dust emissions from hydraulic fracturing remain an ongoing concern for the industry. A collaborated with industry experts, applied 50-plus years of coating expertise and adapted a coating application system to develop an effective technology for silica dust control. SandTec, A patented next-generation silica dust control proppant coating technology, reduces respirable silica dust by up to 99% to within the Occupational Safety and Health Administration’s new permissible exposure limit and action level. When applied to fracture sand, SandTec provides continuous silica dust protection across the hydraulic fracturing supply chain. The technology provides continuous protection from sand plant to wellhead, and it simplifies and fast-tracks fracture sand logistics. SandTec also offers ease of application without drying or curing and compatibility with a variety of fracture fluids while not adversely affecting well performance or occupying valuable fracture site real estate. With this technology there is no need for setup, tear-down or maintenance of mechanical dust control systems. SandTec offers reduction of site dust that can adversely affect equipment, and it is an environmentally friendly U.S. Department of Agriculture-certified 100% biobased product under the BioPreferred program.
NEW CEMENT SYSTEM OFFERS ENHANCED MECHANICAL PROPERTIES, LOWER DENSITY
N cement is a low-Portland cement system designed to deliver better mechanical properties at a lower density than conventional cement systems. This technology is the result of D’s R&D team discovering physicochemical synergies between specialized materials and Portland cement. The improved mechanical properties can include increased ductility for better resistance to cyclical stress loading during fracturing stages; increased “strain to failure,” improving robustness for the life of the well; and improved compressive and tensile strengths at given density. N cement has demonstrated more than 10% improvement in compressive strength and up to a 15% improvement in elasticity compared to a conventional cement system with greater than a 1-parts-per-gallon higher density. This combination of enhancements results in a compressive strength to Young’s modulus ratio that can be 30% higher than the higher density conventional cement systems. N cement enables lighter weight cement systems with easier and improved mechanical properties without increasing cost to the customer or requiring additional rigsite equipment. This new product was commercially introduced in early 2016, and to date more than 1 MMbbl have been pumped for more than 90 customers.
NEW BIODEGRADABLE FRACTURING SLEEVE BALLS, PLUGS DISSOLVE FASTER
Operators have struggled with biodegradable frack sleeve balls and plugs as they can take several days or weeks to dissolve. L Solutions LLC has developed a microbial solution that dissolves polyactic acid polymer and dissolvable packers much more quickly—in hours rather than days—at a wide range of temperatures. This allows much quicker production ramps and revenue generation. L also is working on hydraulic fracturing/ completion solutions such as in situ biosurfactant production, fracture damage repair and biopolymer utilization for carrier fluids. These solutions support the trend toward increasing lateral lengths that are otherwise constrained by coiled tubing limitations (see figure). For example, L’ biodegradable biosurfactant flowback solution can efficiently decrease water surface tension to the desired 28 to 30 dynes/ cm range.
DISSOLVABLE ALLOYS OFFER FLEXIBILITY IN SLIDING SLEEVE, PNP OPERATIONS
M offers S dissolving magnesium alloys, which encompass a wide range of material properties for highstrength or high-ductility applications as well as controlled dissolution performance in salt solutions or freshwater. S alloys are being used in sliding sleeve and plug-and-perf (PNP) applications as fracturing balls and for dissolving fracturing plug components in North American oil and gas wells. The wide range of SoluMag dissolving magnesium alloys was developed to give the designer, service company or operator the confidence that the material will work in downhole conditions predictably and reliably. Using S lowers the risk of uncorroded magnesium returning to surface. Giving the user the data as to how this material performs in the wide range of operating conditions will allow the completion to go smoothly without intervention.
NEW RESIN OFFERS MORE THAN 20,000 PSI OF STRENGTH
M, a producer of high-performance polymers, offers a new nonmetallic composite material for inner-string cementing equipment. P is a new high-strength grade of thermosetting resin for replacing aluminum in plugs, valves, noses and housings. The product offers more than 20,000 psi of strength as well as temperature ratings that exceed 204 C (400 F). The material is easy to machine and drills out up to 20 times faster than aluminum, delivering several hours of rig time cost savings. Like the other products in M’s P product line, P is easy to mold using low-cost equipment in high throughput. The new high-strength grade of thermosetting resin complements M’s product line of low drag and wear-resistant polymers.
SOLID OST ENHANCES PRODUCTION ANALYSIS
The utility of oil-soluble tracers (OST) in production analysis is based on the assumption that chemical tracer recovery in produced oil accurately reflects downhole oil production. How closely this holds true is a function of how closely OST recovery is proportional to actual oil production. Any fluid pressure pumped into a formation can be squeezed back out of the formation by in situ pressure and can result in false-positive oil production readings. Historical data recovery from liquid OSTs has been relatively short-term. This is because injected OST liquid volumes are low relative to total injected fracture fluid volumes and consequently quickly play out. This has been a well-known and generally accepted industry norm for decades, with no known practical alternative. To address these limitations, 34 solid OST products are now available to the completion and refracturing market. These solid particulate OSTs are injected into the blender tub along with the proppant and carried out into the formation during hydraulic fracturing. These particulates then remain locked deeply in situ in the fracture pack, thereby eliminating the effect of formation pressure squeezing the OSTs back out of the formation as the fracture pressure wave subsides. The particulate OST only releases its chemical tracer signature when movable oil comes in contact with the embedded particulate. This results in longer term datasets, with some instances exceeding two years of tracer recovery.
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