
壓裂施工完成后,傳統的工序是將壓裂球返排至地面,但有時存在由于地層壓力不足或球變形等導致壓裂球卡死在通道內而無法返排至地面的情況,此時需要下鉆磨銑球和球座,否則將嚴重影響油井產量。使壓裂球具備可分解功能成為解決這個問題的有效辦法之一,即壓裂作業完成后壓裂球可自行分解,從而可以免去返排或磨銑工序,消除了壓裂球阻塞通道的可能性。
為適應投球滑套分段壓裂需求,可分解壓裂球需同時具備兩方面特點:一是在地層水等電解質液體中可自行快速分解,二是在地層較高溫度下具有較大的強度。
石油圈曾介紹過Phenom Innovations公司的一款Wraith可降解壓裂球。該技術可在超過100℉的環境下,在任何一種水溶液中完全降解,降解速率可根據不同條件提前設定,為后續完井作業減少了大量的工序,節約了作業成本。
2014年,Terves公司推出了第二代TervAlloy可分解壓裂球。近期該公司宣稱,第二代TervAlloy可分解壓裂球已經廣泛應用,在北美的水平井壓裂完井中得以施展拳腳。本文將對該技術的性能進行詳細介紹。
與上一代可溶性壓裂球金屬相較,新一代的壓裂球由TervAlloy?鎂鋁納米復合材料制成,通過控制流體(例如電解質)、電激勵或熱激勵進行分解。TervAlloy?納米復合壓裂球強度更高,且強度保持時間更長,以保證長時間壓裂作業的實施,儲存與處理更加方便,不容易發生過早退化,已在超過75000級的壓裂作業中得以成功應用。
Terves公司創始人兼首席技術官Andrew Sherman,于2015年4月22日在卡爾加里召開的首屆加拿大頁巖技術大會上介紹了此次創新成果。該次會議由Gulf Publishing公司下屬的世界油氣雜志(World Oil magazine)和DMG Events傳媒公司承辦,是一屆頁巖氣專業人士與專家深入探討行業發展前景和最新技術進展的高層論壇。
高強度,可溶解
Sherman在演講中會詳細闡述了納米復合金屬材料的諸多技術特性:比鋁更輕且更強韌,當暴露在井下高溫完井液中時將以高度可控方式完成分解過程,化百煉鋼為繞指柔,保證井筒“暢通無阻”。石油圈原創www.h29736.cn
迄今為止,高強度可分解壓裂球主要應用于油田的滑動套筒完井作業中。最近,新型壓裂球應用觸角延伸至橋塞和射孔完井作業中。
依托新一代高強度、低成本的納米復合金屬技術,貫眼可溶解性作業工具研發步伐大幅加快。Terves公司具備專利性的納米復合金屬技術,在可溶解金屬壓裂球與類似特性的完井工具供應商內扮演著“領頭羊”的角色。
與低強度可溶性聚合物或初代可溶性金屬壓裂球相比,新一代鎂鋁合金壓裂球在投球到位過程中可保持外形穩定且不會發生分解,抗拉強度可達45000psi,當泵送壓力超過10000psi后可有效驅動壓裂滑套或密封壓裂橋塞。
一旦投遞到位,TervAlloy?鎂鋁納米復合材質壓裂金屬球在完井液和井底溫度(85℉-200℉)作用下可降解為可溶性微米顆粒,利于從井筒循環排出。壓裂完井后經過1-5天,新型工具已經完全降解,井筒“暢通無阻”,后期無需連續油管作業。
TervAlloy?鎂鋁納米復合壓裂金屬球由五種配方加工而成,在不同完井液體系和井底溫度下的降解速率不同。兩種涂層材料使得壓裂球在降解階段可聯合開展酸化作業,或在觸發媒介進入井筒前防止壓裂球的完全降解。石油圈原創www.h29736.cn
“鑒于TervAlloy?鎂鋁納米復合壓裂金屬球在油田中的成功應用,Terves公司乘勝出擊,與多家油田服務公司合作,提供專利技術指導,研發出其他類似的可溶性完井工具,比如滑套球座、完全溶解性壓裂暫堵劑、可分解橋塞、預射孔襯管以及厚壁短管等?!盨herman說道。
“Terves公司一直致力于研究新型材料及應用,包括防砂篩管、提高壓裂導通性技術、遇淡水可分解的用于海上生產井的高比重鹽水以及強度更高的小尺寸合金球(減小質量,從而降低成本)?!彼终f道。石油圈原創www.h29736.cn
“可分解壓裂球的應用降低了后續連續油管作業的必要性,可顯著降低運營商的施工成本?!?/span>
Tervalloy合金在鹽水、酸、淡水以及溴化鈣(海上生產井所用媒介)中,可通過可控、可靠的方式完成分解。同時,可形成拱形支架或滲透到工具內部(防砂):
- 可泵送應用;
- 示蹤劑/化學藥劑釋放;
- pH值控制;石油圈原創www.h29736.cn
- 液流轉向。
Tervalloy系列工具能夠與當前套筒配合使用,可加工成多種形狀。金屬球和其他完井工具的加工誤差均可控制在0.003英寸的精度范圍內。新型工具的應用可減少清理井筒及循環成本,顯著節約成本并提高生產速度。
作業期間必需更高的壓差?TervAlloy高強度壓裂球和其他完井工具給出的答案是否定的。
- 活性彈頭和導彈應用;
- 高強度壓裂球;石油圈原創www.h29736.cn
- 標準化高強度完井工具,比如套筒、篩管和氣缸;
- 橋塞、銷子、閥門、桿、螺絲和油管;
- 滿足任意機械加工、擠壓或沖壓方式;可溶性增強型完井工具;
- 利用壓裂酸觸發套管射孔;
- 可溶性藥型罩/爆炸成型穿透彈藥(EFP,Explosively Formed Penetrator);
- 高密度結構性能量。石油圈原創www.h29736.cn
“可降解壓裂球的應用,可避免投球不到位問題并減少清理井筒及循環成本,從而為運營商顯著節約成本?!盨herman說。
小編手中還握有TervAlloy可分解壓裂球等相關產品更多資料哦,想獲???很簡單:請將此文章分享至朋友圈,發送截圖和郵箱地址至石油圈微信后臺。小編會將資料打包奉上,發送至您的郵箱!還有機會與技術專家進行溝通交流哦~
來自/Tervalloy ?譯者/姚園 ?編輯/Leia
Terves Inc. announced that more than 500 of its second-generation TervAlloy engineered disintegrating frac balls have been successfully deployed in horizontal frac completions in North America since their introduction in late 2014.
These new, lower-cost and higher strength metallic tools are easier to store and handle and less prone to early degradation than prior generation dissolvable metals, which have been used on more than 75,000 frac stages over the last three years.
The announcement coincides with a scheduled presentation by Andrew Sherman, Terves Inc.’s founder and Chief Technology Officer, at the inaugural ShaleTECH Canada conference in Calgary on April 22, 2015. The conference, sponsored by Gulf Publishing’s World Oil magazine and DMG Events, will be a high-level forum for shale gas professionals to hear experts discuss the industry outlook and the latest technology advancements for shale gas development.
Advantages of High Strength Dissolvable Metals
In his presentation, “Emerging High Strength Dissolvable Materials,” Mr. Sherman will review the technical principles of nanocomposite metals, which are lighter and stronger than aluminum, and which are engineered to disintegrate in a highly controllable manner when exposed to completion fluids at downhole temperatures.
To date, the main oilfield application for high strength dissolvable materials has been for dissolvable frac balls used with sliding sleeve completions. More recently, dissolving balls have been deployed with bridge plugs for plug and perf completions.
Full bore dissolvable tools are just emerging, enabled by the higher strength and lower cost of the next-generation materials. Terves has proprietary and patented nanocomposite technology and is a leading supplier of disintegrating magnesium frac balls and completiontool components.
Unlike balls made of less rigid dissolvable polymers and prior generation dissolvable metals, these engineered magnesium alloy frac balls maintain their shape and do not start degrading in the ball drop system, while effectively actuating sleeves or sealing frac pugs at pumping pressures that can exceed 10,000 psi.
Once deployed, the engineered alloy tools respond to a combination of completion fluids and bottomhole temperatures of 85℉ to 200℉ to degrade into soluble micron-sized particles that easily circulate out of the well. Within 1-5 days after the frac completion, tools are completely disintegrated, leaving an unobstructed wellbore, without requiring coiled tubing drill out operations.
“Disintegrating frac balls create significant savings for operators by preventing ball hang-up problems and reducing drill out and circulating costs,” Mr. Sherman said.
Five formulations of TervAlloy “Engineered Response” Magnesium Alloys are available with useable tensile strengths up to 45,000 psi and with a range of dissolution rates engineered for different completion fluids and well temperatures. Two coating materials also are available to enable acid treatments with the disintegrating balls/stages in place, or to delay disintegration completely until a triggering solution is introduced into the well.
“With TervAlloy’s advantages field-proven in frac ball applications, Terves continues to work with oilfield service companies and tooling OEM’s to deploy dissolvable metals for construction of other completions components, including sliding sleeve ball seats, fully dissolvable frac plugs, disintegrating bridge plugs, slips and grips, pre-perforated liners, and short tubular sections,” Mr. Sherman added.
“The company’s research and development efforts also include work on new materials and applications, including sand screens and fracture conductivity enhancement, freshwater dissolvables, dissolvables designed specifically for use with heavy brines in offshore wells, and even higher strength alloys to enable smaller seats and reduced component mass to further reduce costs,” he said.
“Dissolvable frac balls save operators time and money by reducing the need for coiled tubing drill out operations.”
Tervalloy alloys dissolve in a controlled, reliable manner
- Brine;
- Acid;
- Freshwater;
- CaBr/offshore.
Can be overcast or infiltrated into tools (sand control)
- Pumpable versions in development;
- Tracer/chemical release;
- pH control;
- Flow diversion.
The TervAlloy system is compatible with existing sleeves and can be machined into a variety of shapes. Balls and other components can be machined and kept to tolerances of 0.003”. Eliminate drillouts and flowback. Harness the cost savings and increased production speed that dissolvable tools offer.
Need higher pressure differentials? TervAlloy High Strength frac balls, tools & tubulars available.
- Reactive Warheads and Missile Cases;
- High strength Frac Balls;
- Standard and high-strength completion tools like sleeves, screens and cylinders;
- Plugs, pins, gates/valves, rods, screws and tubing;
- Any machinable, extrudable, or stampable form;
- Dissolvable enhanced completion tools;
- Triggered perforated sleeve with integral fracture aids;
- Dissolving/disintegrating shaped charge liners/EFP’s;
- High density Structural energetics (consumable cases, reactive fragments/EFP’s).
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