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Past Technologies Emerge Due to Lightweight Proppant Technology: Case Histories Applied on Mature Fields

机译:轻质支撑剂技术催生了过去的技术:在成熟领域中应用的案例历史

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In mature fields, operators are often seeking ways to increase the hydrocarbon recovery, with the help of reputable service companies. Well stimulation continues to be, by far, the preferred method of achieving such goal. Operators and service companies are continually screening out technologies which will deliver the highest benefit/cost ratio for a particular stimulation well treatment, maintaining focus on operational and health, safety and environment excellencies . This paper addresses the rebirth of a past hydraulic fracturing technique, born in the 50’s, and how it is being successfully applied on onshore mature fields in Brazil: batch fracturing. It is effective due to several technological advancements on proppant density, becoming lighter than conventional frac sand and yet with sufficient mechanical properties to withstand bottom-hole environments. Batch fracturing is now contributing to equally efficient, and more economical well stimulation treatments, providing good economical returns to operating companies. Batch-Fracturing had limited success in the past. This was due to the available frac fluid and proppant technologies at that time. It is desirable that proppants have low settling when carried by a fracturing fluid, from the time they are added into such fluid, until the end of the pumping process. Batch fracturing applications are on the rise, due to the new families of ultra lightweight proppants, with specific gravities ranging from 1.05 to 1.75. In batch fracturing, the proppant is added to the carrier fluid prepared in standard oilfield mixing tanks, eliminating the need of specialized mixing equipment such as blenders. Less sophisticated equipment on location implies in lower operational and logistical costs. The carrier fluid (“frac fluid”) does not need to yield high levels of viscosity, and, by consequence, does not have a high load of chemicals (gelling agents, cross-linkers, related breakers…). With batch fracs it is possible to perform common but effective types of fracturing treatments, such as “skin-by-pass” (a fracture that by-passes the damaged zone), and “partial mono layer’ fracturing, both exemplified in this paper, through case histories.
机译:在成熟领域,运营商经常在信誉良好的服务公司的帮助下寻求增加碳氢化合物采收率的方法。到目前为止,油井增产仍然是实现该目标的首选方法。运营商和服务公司正在不断筛选将为特定增产井处理提供最高收益/成本比的技术,并始终将重点放在运营,健康,安全和环境方面。本文探讨了50年代诞生的水力压裂技术的重生,以及如何将其成功应用于巴西陆上成熟油田:间歇压裂。由于支撑剂密度方面的多项技术进步,与常规压裂砂相比更轻,并且具有足够的机械性能以承受井底环境,该技术有效。现在,分批压裂正在为同样高效,更经济的增产方法做出贡献,从而为运营公司提供良好的经济回报。过去,分批压裂取得的成功有限。这是由于当时有可用的压裂液和支撑剂技术。理想的是,从压裂剂中添加支撑剂到将其添加到压裂液中直到泵送过程结束为止,其沉降性都较低。由于新的超轻型支撑剂系列,比重范围为1.05至1.75,间歇式压裂应用正在增长。在分批压裂中,将支撑剂添加到在标准油田混合罐中制备的载液中,从而无需专门的混合设备(例如搅拌器)。现场使用不太先进的设备意味着运营和后勤成本降低。载液(“压裂液”)不需要产生高水平的粘度,因此不需要大量的化学药品(胶凝剂,交联剂,相关的破胶剂……)。使用分批压裂,可以执行常见但有效的压裂处理类型,例如本文中举例说明的“绕过皮”(绕过损坏区域的裂缝)和“部分单层”压裂。 ,通过案例历史记录。

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