WO2020258005A1 - 一种用于提供移动电力的系统 - Google Patents

一种用于提供移动电力的系统 Download PDF

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WO2020258005A1
WO2020258005A1 PCT/CN2019/092668 CN2019092668W WO2020258005A1 WO 2020258005 A1 WO2020258005 A1 WO 2020258005A1 CN 2019092668 W CN2019092668 W CN 2019092668W WO 2020258005 A1 WO2020258005 A1 WO 2020258005A1
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Prior art keywords
exhaust
transportation
transportation device
providing mobile
air intake
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PCT/CN2019/092668
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English (en)
French (fr)
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冯宁
李鑫
张涛
张亭
周立宾
王丽丽
查万春
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烟台杰瑞石油装备技术有限公司
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Priority to PCT/CN2019/092668 priority Critical patent/WO2020258005A1/zh
Publication of WO2020258005A1 publication Critical patent/WO2020258005A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02CGAS-TURBINE PLANTS; AIR INTAKES FOR JET-PROPULSION PLANTS; CONTROLLING FUEL SUPPLY IN AIR-BREATHING JET-PROPULSION PLANTS
    • F02C6/00Plural gas-turbine plants; Combinations of gas-turbine plants with other apparatus; Adaptations of gas-turbine plants for special use
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02CGAS-TURBINE PLANTS; AIR INTAKES FOR JET-PROPULSION PLANTS; CONTROLLING FUEL SUPPLY IN AIR-BREATHING JET-PROPULSION PLANTS
    • F02C7/00Features, components parts, details or accessories, not provided for in, or of interest apart form groups F02C1/00 - F02C6/00; Air intakes for jet-propulsion plants
    • F02C7/20Mounting or supporting of plant; Accommodating heat expansion or creep

Definitions

  • the present invention relates to the field of power generation technology, in particular to a system for providing mobile power.
  • the electric drive fracturing complete set of equipment will effectively reduce the emission of environmental pollutants, greatly reduce the floor space, reduce noise, and reduce operating and maintenance costs.
  • the use of complete sets of electric drive fracturing equipment and the continuous increase in power of electric drive fracturing equipment put forward higher and higher requirements for the power supply at the job site.
  • the wellsite cannot realize the power supply of fracturing equipment through the grid.
  • the fracturing operation has the characteristics of short operation cycle, and the fracturing equipment needs to be moved between different well sites.
  • the components of the power supply system have different assembly methods, different vehicle configurations, and different installation methods.
  • the installation time required is as long as one month and as short as half a month.
  • the purpose of the present invention overcomes the shortcomings of the prior art and provides a system for providing mobile power by reasonably integrating the equipment required for the fracturing site power supply system, as well as connecting cables and connecting hoses, and dividing them into 3 transportation carriers. Move and effectively connect, realize the fast movement of the fracturing site power supply system, and fast installation and docking.
  • a system for providing mobile power including a turbine power generation transportation device, an exhaust gas transportation device and an auxiliary system transportation device, the auxiliary system transportation device and the exhaust gas transportation device are connected
  • the turbine power generation transportation device includes an air intake assembly, a gas turbine, a generator, and a first transportation tool.
  • the air intake assembly, the gas turbine, and the generator are sequentially connected and arranged in the first transportation device.
  • the exhaust transportation device includes a mobile accessory, an exhaust chimney, an exhaust muffler, an exhaust joint and a second transportation means, and the mobile accessory, an exhaust chimney, an exhaust muffler and an exhaust joint are provided On the second transport.
  • the turbine power generation and transportation device further includes a power unit and a control system, the power unit is used to output electricity from the generator, and the control system includes a gas turbine control unit and a generator control unit.
  • the air intake assembly is arranged at one end of the traveling direction of the first vehicle and is connected to the gas turbine through an air intake joint.
  • the air intake assembly includes an air intake muffler and an air intake filter.
  • the auxiliary system transportation device includes an air supply skid, a water washing system, a fire fighting system, a lubrication system, a ventilation system, other auxiliary systems, and a third means of transportation.
  • the ventilation system and other auxiliary systems are located on the third means of transportation.
  • the exhaust chimney and the exhaust muffler are connected in a hinged manner.
  • the exhaust chimney and the exhaust muffler are arranged side by side, and in the working state, the exhaust chimney is arranged in the exhaust muffler.
  • the top of the gas silencer is arranged in the transportation state.
  • the exhaust chimney can rotate 180° around the hinge point.
  • the shape of the exhaust joint is a vertical cylinder type or an elbow type.
  • connection of the exhaust chimney and the exhaust muffler in two different positions in the transportation state and the working state not only meets the requirements of road transportation during transportation, but also meets the requirements of exhaust emission during work.
  • the mobile accessories are integrated on the exhaust transportation device (the mobile accessories mainly include the hoses and cables used for the connection between the auxiliary system transportation device and the turbine power generation transportation device work site), so that the connection hoses and cables at the power supply site are obtained Effectively sorting and grouping together can also reduce the workload of on-site cable and hose connections.
  • the exhaust joint can be set to a vertical cylinder type or an elbow type, so that the exhaust transportation device can be docked with the turbine power generation transportation device T-shaped or side-by-side to better meet the on-site environmental requirements of different customers.
  • Figure 1 is a schematic diagram of the overall structure of a mobile power system.
  • Figure 2 is a schematic diagram of the structure of a turbine power generation transportation device.
  • Figure 3 is a schematic diagram of the structure of the auxiliary system transport device.
  • Figure 4 is a schematic diagram of the structure of the exhaust transport device.
  • Turbine power generation and transportation device 101. Air intake component, 102. Intake connector, 103. Gas turbine, 104. Generator, 105. Power control system, 200. Auxiliary system transportation device, 201. Air supply skid, 202. Water washing system, 203. Fire fighting system, 204. Lubrication system, 205. Ventilation system, 206. Other auxiliary systems, 300. Exhaust transportation device, 301. Mobile accessories, 302. Exhaust chimney, 303. Exhaust silencer , 304. Exhaust connector.
  • a system for providing mobile power includes a turbine power generation transportation device 100, an exhaust gas transportation device 300, and an auxiliary system transportation device 200, the auxiliary system transportation device 200 and the exhaust gas transportation device 300 Connected to at least one side of the turbine power generation transportation device 100, the turbine power generation transportation device 100 includes an air intake assembly 101, a gas turbine 103, a generator 104, a power control system 105 and a first transportation tool.
  • the air intake assembly 101, The gas turbine 103 and the generator 104 are sequentially connected in the horizontal direction and arranged on the first transportation means.
  • the power control system 105 is arranged on the first transportation means.
  • the air intake assembly 101 is arranged on the first transportation means.
  • One end of the direction is connected to the gas turbine 103 through the air inlet connector 102 to provide the gas turbine 103 with filtered combustion air.
  • the installation of the air intake assembly 101 is a relatively time-consuming and laborious installation part of the entire mobile power system. This technical solution is installed on the same transportation tool, connected through the air intake connector 102, and directly transported to the customer site, effectively saving customers Installation time on site.
  • the air intake assembly 101 and the gas turbine 103 are connected in a horizontal direction, which also facilitates the transportation of the turbine power generation transportation device 100.
  • the auxiliary system transportation device 200 is connected to the turbine power generation transportation device 100 through a quick detachable joint.
  • the generator 104 is placed on the side of the output shaft of the gas turbine 103 and is connected by an intermediate shaft.
  • the shaft alignment is carried out before leaving the factory to reduce the difficulty of on-site assembly and shorten the assembly time.
  • the power control system 105 is integrated into the turbine power generation transportation device 100, which avoids a lot of field wiring work and also prolongs the service life of electrical components.
  • the overall design of the mobile power system avoids hoisting work, reduces the difficulty of field operations, and improves the convenience of docking installation operations.
  • the power control system 105 integrates a power unit and a control system.
  • the power unit is used to output the electricity of the generator 104 to the outside.
  • the control system includes a gas turbine control unit and a generator control unit.
  • the exhaust transportation device 300 includes a moving accessory 301, an exhaust chimney 302, an exhaust muffler 303, an exhaust joint 304 and a second transportation tool, the moving accessory 301, an exhaust chimney 302, an exhaust muffler 303 and The exhaust joint 304 is provided on the second vehicle.
  • the mobile accessories 301 mainly include hoses, cables, etc. used to connect the auxiliary system transportation device 200 and the turbine power generation transportation device 100, so that the connecting hoses and cables at the power supply site are effectively organized, and the collection together can also reduce the field cables. The amount of work required to connect to the hose.
  • the mobile accessories 301 include cable reels, manifold baskets, manifold brackets, etc., for storing and accommodating cables and hoses.
  • the intake assembly 101 includes an intake muffler and an intake filter, and the intake muffler is connected to the intake filter.
  • the auxiliary system transportation device 200 includes an air supply skid 201, a water washing system 202, a fire fighting system 203, a lubrication system 204, a ventilation system 205, other auxiliary systems 206, and a third transportation tool.
  • the air supply skid 201, a water washing system 202, The fire fighting system 203, the lubrication system 204, the ventilation system 205 and other auxiliary systems 206 are provided on the third transportation means.
  • the other auxiliary system 206 is a controllable space layout.
  • the auxiliary system transportation device 200 may also be provided with a water injection system, an instrument air system, and a hydraulic system according to actual needs.
  • the lubrication system 204 provides lubrication for the gas turbine 103 and the generator 104.
  • the ventilation system 205 is used to ventilate the interior of the cabin of the turbine power generation transportation device 100, and the ventilation system 205 is connected to the cabin of the turbine power generation transportation device 100 through a ventilation hose.
  • the air supply skid 201, the water washing system 202 and the fire fighting system 203 are arranged on the front side of the third vehicle.
  • the gas supply skid 201 provides fuel for the gas turbine 103
  • the water washing system 202 is used for cleaning the gas turbine 103
  • the fire fighting system 203 is used for fire fighting inside the cabin of the turbine power generation transportation device 100.
  • the exhaust chimney 302 and the exhaust muffler 303 are connected in a hinged manner. In the transportation state, the exhaust chimney 302 and the exhaust muffler 303 are arranged side by side. In the working state, the exhaust chimney 302 is provided with At the top of the exhaust muffler 303.
  • the connection of the exhaust chimney 302 and the exhaust muffler 303 in two different positions in the transportation state and the working state not only meets the requirements of road transportation during transportation but also meets the requirements of exhaust gas emission during operation.
  • the exhaust chimney 302 can rotate 180° around the hinge point.
  • the exhaust chimney 302 can be caused to rotate around the hinge point through auxiliary mechanisms such as hydraulic cylinders, so that the exhaust chimney 302 is set on the top of the exhaust muffler 303, and then the interface between the two is sealed by a locking device .
  • the shape of the exhaust joint 304 is a vertical cylinder type or an elbow type, so that the exhaust gas transportation device 300 can be docked with the turbine power generation transportation device 100 in a T-shape or side by side, so as to better meet the on-site environmental requirements of different customers .
  • the exhaust joint 304 is of a vertical cylindrical design, and the exhaust transportation device 300 is connected to the turbine power generation transportation device 100 in a T-shape through the tail.
  • the exhaust joint 304 is of an elbow design, and the exhaust transportation device 300 is connected side by side with the turbine power generation transportation device 100 through the elbow exhaust joint 304 at the tail.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Engine Equipment That Uses Special Cycles (AREA)

Abstract

本发明公开了一种用于提供移动电力的系统,通过将压裂现场供电系统所需的设备以及连接电缆和连接软管的合理整合,分成3个运输载体来移动并有效连接,第一运输工具上将进气组件和涡轮发电系统结合在一起并安装完毕,直接运输到客户现场,省去了用户现场两者的安装时间。排气烟囱与排气消音器的两种不同位置的设计,既满足道路运输的要求又满足工作时废气排放的要求。

Description

一种用于提供移动电力的系统 技术领域
本发明涉及发电技术领域,具体涉及一种用于提供移动电力的系统。
背景技术
油气工业通常使用水力压裂来促进烃类井(比如油井或气井)的生产。传统压裂设备通常具有占地面积大、环境污染严重等问题,难以满足当前严峻的环境要求及井场作业占地面积要求。
电驱压裂成套设备将有效减少环境污染物的排放,大幅减少占地面积,降低噪声并降低作业和维护成本。成套电驱压裂设备的使用以及电驱压裂设备功率的不断增大,对作业现场的电力供应提出越来越高的要求。通常井场无法通过电网实现压裂设备的供电。而且压裂作业具有作业周期较短的特点,压裂设备需要在不同井场间进行移动。通常情况下,供电系统各部件之间因为组装方式不同,车载构成不同,安装方式不同,所需的安装时间长则1个月,短则半个月。
如何为电驱压裂作业现场提供安装时间短,安装便捷、可移动式的电力供应成为当今电驱压裂作业面临的一大挑战。
发明内容
本发明的目的克服现有技术的不足,提供一种用于提供移动电力的系统,通过将压裂现场供电系统的所需设备以及连接电缆和连接软管的合理整合,分成3个运输载体来移动并有效连接,实现了压裂现场供电系统的快速移动,快速安装对接。
本发明的目的是通过以下技术措施达到的:一种用于提供移动电力的 系统,包括涡轮发电运输装置,排气运输装置和辅助系统运输装置,所述辅助系统运输装置和排气运输装置连接在涡轮发电运输装置的至少一个侧面,所述涡轮发电运输装置包括进气组件,燃气涡轮机,发电机和第一运输工具,所述进气组件,燃气涡轮机,发电机依次连接并设在第一运输工具上,所述排气运输装置包括移动附件,排气烟囱,排气消音器,排气接头和第二运输工具,所述移动附件,排气烟囱,排气消音器和排气接头设在第二运输工具上。
进一步地,所述涡轮发电运输装置还包括电力单元和控制系统,所述电力单元用于将发电机的电对外输出,所述控制系统包括燃机控制单元和发电机控制单元。
进一步地,所述进气组件设在第一运输工具行进方向的一端并通过进气接头与燃气涡轮机连接。
进一步地,所述进气组件包括进气消音器和进气过滤器。
进一步地,所述辅助系统运输装置包括供气撬、水洗系统、消防系统、润滑系统、通风系统、其他辅助系统和第三运输工具,所述供气撬、水洗系统、消防系统、润滑系统、通风系统和其他辅助系统设在第三运输工具上。
进一步地,所述排气烟囱与排气消音器通过铰接的方式连接,在运输状态下,所述排气烟囱与排气消音器并排设置,在工作状态下,所述排气烟囱设在排气消音器的顶部。
进一步地,所述排气烟囱能绕铰接点旋转180°。
进一步地,根据客户现场的环境不同,可设置不同形状的排气接头。
进一步地,所述排气接头的形状为竖直筒式或弯管式。
与现有技术相比,本发明的有益效果是:
1.将进气组件和涡轮发电系统结合在一个运输工具上并安装完毕,直接运输到客户现场,省去了用户现场两者的安装时间。
2.将进气组件设在第一运输工具行进方向的一端,并与涡轮发电系统水平方向连接,合理整合了第一运输工具上所有设备的空间位置,并方便运输。
3.排气烟囱与排气消音器在运输状态和工作状态下两种不同位置关系的连接,既满足运输时道路运输的要求又满足工作时废气排放的要求。
4.在排气运输装置上融合了移动附件,(移动附件主要包括辅助系统运输装置与涡轮发电运输装置作业现场连接所用的软管、电缆等),使得供电现场的连接软管和电缆得到了有效整理,归集到一起还可以减少现场电缆和软管连接所需工作量。
5.排气接头可设置为竖直筒式或弯管式,使得排气运输装置可以与涡轮发电运输装置丁字型对接,或并排的对接,以便更好的满足不同客户的现场环境要求。
下面结合附图和具体实施方式对本发明作详细说明。
附图说明
图1是移动电力系统的整体结构示意图。
图2是涡轮发电运输装置的结构示意图。
图3是辅助系统运输装置的结构示意图。
图4是排气运输装置的结构示意图。
其中,100.涡轮发电运输装置,101.进气组件,102.进气接头,103.燃气涡轮机,104.发电机,105.电力控制系统,200.辅助系统运输装置,201.供气撬,202.水洗系统,203.消防系统,204.润滑系统,205.通风系统,206.其他辅助系统,300.排气运输装置,301.移动附件,302.排气烟囱,303.排气消音器,304.排气接头。
具体实施方式
如图1到4所示,一种用于提供移动电力的系统,包括涡轮发电运输装置100,排气运输装置300和辅助系统运输装置200,所述辅助系统运输装置200和排气运输装置300连接在涡轮发电运输装置100的至少一个侧面,所述涡轮发电运输装置100包括进气组件101,燃气涡轮机103,发电机104,电力控制系统105和第一运输工具,所述进气组件101,燃气涡轮机103和发电机104在水平方向上依次连接并设在第一运输工具上,电力控制系统105设在第一运输工具上,具体的,所述进气组件101设在第一运输工具行进方向的一端并通过进气接头102与燃气涡轮机103连接,为燃气涡轮机103提供过滤后的助燃空气。进气口的连接没有弯头使用,保证进气流向稳定,降低压力损失。进气组件101的安装作为整个移动电力系统中比较费时费力的安装部分,本技术方案采用同一运输工具上设置,并通过进气接头102连接完毕,直接运输到客户现场的方式,有效节约了客户现场的安装时间。在同一运输工具上,进气组件101与燃气涡轮机103采用水平方向的连接形式,也使涡轮发电运输装置100方便运输。所述辅助系统运输装置200通过可快速拆卸接头与涡轮发电运输装置100连接。发电机104置于燃气涡轮机103输出轴侧,通过中间轴连接,出厂前进行 轴系校中,降低现场装配难度,缩短装配时间。电力控制系统105集成到涡轮发电运输装置100上,避免大量的现场接线工作,同时也延长了电气元件的使用寿命。本移动电力的系统整体设计避免了吊装工作,降低现场作业难度,提高了对接安装操作的便利性。
电力控制系统105上集成了电力单元和控制系统,所述电力单元用于将发电机104的电对外输出,所述控制系统包括燃机控制单元和发电机控制单元。
所述排气运输装置300包括移动附件301,排气烟囱302,排气消音器303,排气接头304和第二运输工具,所述移动附件301,排气烟囱302,排气消音器303和排气接头304设在第二运输工具上。所述移动附件301主要包括辅助系统运输装置200与涡轮发电运输装置100连接所用的软管、电缆等,使得供电现场的连接软管和电缆得到了有效整理,归集到一起还可以减少现场电缆和软管连接所需工作量。移动附件301包括线缆卷盘、管汇筐、管汇托架等,用于存储、收纳线缆和软管等。
所述进气组件101包括进气消音器和进气过滤器,进气消音器和进气过滤器连接。
所述辅助系统运输装置200包括供气撬201、水洗系统202、消防系统203、润滑系统204、通风系统205、其他辅助系统206和第三运输工具,所述供气撬201、水洗系统202、消防系统203、润滑系统204、通风系统205和其他辅助系统206设在第三运输工具上。其他辅助系统206为可调控的空间布局,根据客户现场的实际空间情况,用于辅助安装涡轮发电运输装置100上电力控制系统105的部分组件,但并不作为电力控制系统105 中主要或/和重要或/和连接安装关系复杂的组件的安装位置。所述辅助系统运输装置200上还可以根据实际需要设置注水系统、仪表风系统和液压系统。润滑系统204为燃气涡轮机103和发电机104提供润滑。通风系统205用于涡轮发电运输装置100的舱体内部通风,所述通风系统205通过通风软管与涡轮发电运输装置100的舱体连接。
所述供气撬201、水洗系统202和消防系统203设在第三运输工具的前侧。供气撬201为燃气涡轮机103提供燃料,水洗系统202用于燃气涡轮机103清洁,消防系统203用于涡轮发电运输装置100的舱体内部消防。
所述排气烟囱302与排气消音器303通过铰接的方式连接,在运输状态下,所述排气烟囱302与排气消音器303并排设置,在工作状态下,所述排气烟囱302设在排气消音器303的顶部。排气烟囱302与排气消音器303在运输状态和工作状态下两种不同位置关系的连接,既满足运输时道路运输的要求又满足工作时废气排放要求。
所述排气烟囱302能绕铰接点旋转180°。旋转时,可以通过液压油缸等辅助机构促使排气烟囱302绕铰接点旋转,使得排气烟囱302设在排气消音器303的顶部,然后两者之间的接口处,通过锁紧装置实现密封。
根据客户现场的环境不同,可设置不同形状的排气接头304。所述排气接头304的形状为竖直筒式或弯管式,得排气运输装置300可以与涡轮发电运输装置100丁字型对接,或并排对接,以便更好的满足不同客户的现场环境要求。实施例1中,排气接头304为竖直筒式设计,排气运输装置300通过尾部与涡轮发电运输装置100丁字型对接。实施例2中,排气接头304为弯管式设计,排气运输装置300通过尾部的弯管排气接头304与涡轮 发电运输装置100并排对接。
本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内。本发明要求保护范围由所附的权利要求书及其等效物界定。

Claims (9)

  1. 一种用于提供移动电力的系统,其特征在于:包括涡轮发电运输装置,排气运输装置和辅助系统运输装置,所述辅助系统运输装置和排气运输装置连接在涡轮发电运输装置的至少一个侧面,所述涡轮发电运输装置包括进气组件,燃气涡轮机,发电机和第一运输工具,所述进气组件,燃气涡轮机,发电机依次连接并设在第一运输工具上,所述排气运输装置包括移动附件,排气烟囱,排气消音器,排气接头和第二运输工具,所述移动附件,排气烟囱,排气消音器和排气接头设在第二运输工具上。
  2. 根据权利要求1所述的用于提供移动电力的系统,其特征在于:所述涡轮发电运输装置还包括电力单元和控制系统,所述电力单元用于将发电机的电对外输出,所述控制系统包括燃机控制单元和发电机控制单元。
  3. 根据权利要求1所述的用于提供移动电力的系统,其特征在于:所述进气组件设在第一运输工具行进方向的一端并通过进气接头与燃气涡轮机连接。
  4. 根据权利要求3所述的用于提供移动电力的系统,其特征在于:所述进气组件包括进气消音器和进气过滤器。
  5. 根据权利要求1所述的用于提供移动电力的系统,其特征在于:所述辅助系统运输装置包括供气撬、水洗系统、消防系统、润滑系统、通风系统、其他辅助系统和第三运输工具,所述供气撬、水洗系统、消防系统、润滑系统、通风系统和其他辅助系统设在第三运输工具上。
  6. 根据权利要求1所述的用于提供移动电力的系统,其特征在于:所述排气烟囱与排气消音器通过铰接的方式连接,在运输状态下,所述排气烟囱与排气消音器并排设置,在工作状态下,所述排气烟囱设在排气消音 器的顶部。
  7. 根据权利要求6所述的用于提供移动电力的系统,其特征在于:所述排气烟囱能绕铰接点旋转180°。
  8. 根据权利要求1所述的用于提供移动电力的系统,其特征在于:根据客户现场的环境不同,可设置不同形状的排气接头。
  9. 根据权利要求8所述的用于提供移动电力的系统,其特征在于:所述排气接头的形状为竖直筒式或弯管式。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11955782B1 (en) 2022-11-01 2024-04-09 Typhon Technology Solutions (U.S.), Llc System and method for fracturing of underground formations using electric grid power

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107208557A (zh) * 2014-12-19 2017-09-26 进化井服务有限责任公司 用于地下地质构造的水力压裂的移动发电设备
CN107859536A (zh) * 2016-09-21 2018-03-30 通用电气公司 用于具有改进机动性和减小拖车数的移动发电厂的系统和方法
WO2019045689A1 (en) * 2017-08-29 2019-03-07 On-Power, Inc. MOBILE ENERGY GENERATION SYSTEM COMPRISING A CLOSED WALLED BASE STRUCTURE

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107208557A (zh) * 2014-12-19 2017-09-26 进化井服务有限责任公司 用于地下地质构造的水力压裂的移动发电设备
CN107859536A (zh) * 2016-09-21 2018-03-30 通用电气公司 用于具有改进机动性和减小拖车数的移动发电厂的系统和方法
WO2019045689A1 (en) * 2017-08-29 2019-03-07 On-Power, Inc. MOBILE ENERGY GENERATION SYSTEM COMPRISING A CLOSED WALLED BASE STRUCTURE

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11955782B1 (en) 2022-11-01 2024-04-09 Typhon Technology Solutions (U.S.), Llc System and method for fracturing of underground formations using electric grid power

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