CN210289932U - 一种移动发电系统 - Google Patents
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Abstract
本实用新型公开了一种移动发电系统,发电装置分别与独立运输的进气组件和排气管道通过伸缩接头快速对接,实现压裂作业现场发电系统的快速安装对接。进气组件和排气管道分设两个运输工具,在对接时,可调整性更灵活。固定发电装置位置,移动进气组件的位置,使之与发电装置进气室对接,移动排气管道的位置,使之与发电装置的排气收集器对接。
Description
技术领域
本实用新型涉及发电技术领域,具体涉及一种移动发电系统。
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。
实用新型内容
本实用新型的目的克服现有技术的不足,提供一种移动发电系统,发电装置分别与独立运输的进气组件和排气管道通过伸缩接头快速对接,实现压裂作业现场发电系统的快速安装对接。进气组件和排气管道分设两个运输工具,在对接时,可调整性更灵活。固定发电装置位置,移动进气组件的位置,使之与发电装置进气室对接,移动排气管道的位置,使之与发电装置的排气收集器对接。
本实用新型的目的是通过以下技术措施达到的:一种移动发电系统,包括进气运输装置、排气运输装置和发电运输装置;
发电运输装置,包括燃气轮机、进气室、排气收集器、发电机和第一运输工具;
进气运输装置,包括进气组件和第二运输工具,进气组件用于提供助燃空气和燃机室通风空气;
排气运输装置,包括排气管道和第三运输工具;进气运输装置和排气运输装置连接到发电运输装置的侧面。
进一步地,所述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,所述进气运输装置和排气运输装置通过伸缩接头连接到发电运输装置的至少一个侧面。
进一步地,所述进气运输装置设在排气运输装置的同侧或对侧或相邻侧。
进一步地,所述第一运输工具、第二运输工具和第三运输工具为拖车、卡车、滑动垫木或驳船中的至少一种。
进一步地,所述排气管道在运输状态下,水平设在排气运输装置上。
进一步地,所述排气管道在工作状态下,通过液压方式旋转至排气运输装置竖直方向上。
进一步地,所述发电运输装置还包括辅助系统,辅助系统用于辅助发电运输装置的运行。
进一步地,所述进气运输装置还包括进气液压移动装置,在安装对接时,进气液压移动装置用于调整进气运输装置与发电运输装置的相对位置。
进一步地,所述排气运输装置还包括排气液压移动装置,在安装对接时,排气液压移动装置用于调整排气运输装置与发电运输装置的相对位置。
与现有技术相比,本实用新型的有益效果是:通过发电装置,排气管道,进气组件独立的3个运输工具的设置,辅以彼此之间伸缩接头的连接方式,实现压裂作业现场,发电系统的快速安装对接。进气组件和排气管道分设两个运输工具,在对接时,可调整性更灵活。固定发电装置位置,移动进气组件的位置,使之与发电装置进气室对接,移动排气管道的位置,使之与发电装置的排气收集器对接。
下面结合附图和具体实施方式对本实用新型作详细说明。
附图说明
图1是排气运输装置运输状态示意图。
图2是排气运输装置工作状态示意图。
图3是进气运输装置示意图。
图4是发电运输装置示意图。
图5是移动发电系统整体结构(第一种实施例)示意图。
图6是移动发电系统整体结构(第二种实施例)示意图。
图7是移动发电系统整体结构(第三种实施例)示意图。
其中,100.排气运输装置,101.排气伸缩接头,102.排气管道,200.进气运输装置,201.燃机室通风伸缩接头,202.助燃伸缩接头,203.进气组件,300.发电运输装置,301.降噪房,302.燃机室,303.发电机室,304.控制室,305.电力单元,306.控制系统,307.发电机,308.排气收集器,309.燃气轮机,310.进气室。
具体实施方式
本文中所使用的,术语“运输工具”指的是任何运输组件,所述第一运输工具、第二运输工具和第三运输工具为拖车、卡车、滑动垫木或驳船中的至少一种。
一种移动发电系统,包括进气运输装置200、排气运输装置100和发电运输装置300;发电运输装置300,包括燃气轮机309、进气室310、排气收集器308、发电机307、电力单元305,控制系统306和第一运输工具;
进气运输装置200,包括进气组件203和第二运输工具,进气组件203用于提供助燃空气和燃机室通风空气;
排气运输装置100,包括排气管道102和第三运输工具;进气运输装置200和排气运输装置100连接到发电运输装置300的侧面。利用油气井场充足且廉价的烃类燃料(如天然气)为燃气轮机309提供燃料,将烃类燃料的化学能转换为机械能,然后通过发电机307将机械能转化为电能为电驱压裂作业现场供应高效、稳定、环保、可移动的电力。该移动发电系统无需额外辅助设备(如吊车等),有效减少安装时间。进气运输装置200及排气运输装置100体积较小,运输灵活,安装对中难度小,进气运输装置200及排气运输装置100可同时进行安装作业,所需安装时间少。该系统能够实现场地转换后快速的组装并发电,满足压裂作业电力需求。
所述进气运输装置200和排气运输装置100通过伸缩接头连接到发电运输装置300的至少一个侧面。根据发电运输装置300上进气室310接口的不同朝向,所述进气运输装置200可以设在排气运输装置100的同侧或对侧或相邻侧。
所述排气管道102在运输状态下,水平设在排气运输装置100上。
所述排气管道102在工作状态下,通过液压方式旋转至排气运输装置100竖直方向上。
所述发电运输装置300还包括辅助系统,辅助系统用于辅助发电运输装置300的运行。
所述进气运输装置200还包括进气液压移动装置,在安装对接时,进气液压移动装置用于调整进气运输装置200与发电运输装置300的相对位置。
所述排气运输装置100还包括排气液压移动装置,在安装对接时,排气液压移动装置用于调整排气运输装置100与发电运输装置300的相对位置。
图1和图2是排气运输装置的结构示意图。在第三运输工具上设有排气管道102和排气伸缩接头101,其中排气管道102包含排气消音器,排气烟囱和排气弯头,通过排气伸缩接头101实现排气管道102与发电运输装置300的对接。排气伸缩接头101、排气弯头、排气消音器和排气烟囱依次连接。运输状态排气管道102位于水平位置(如图1),工作状态排气管道102通过液压等方式旋转至竖直位置(如图2)。
图3是进气运输装置的结构示意图。在第二运输工具上设进气组件203和进气伸缩接头,进气组件203用于提供助燃空气和燃机室通风空气,进气组件203包括进气过滤器和进气消音器,进气组件203中还集成了通风风扇。进气伸缩接头包括助燃伸缩接头202、燃机室通风伸缩接头201。
图4是发电运输装置的结构示意图。发电运输装置300上安装有降噪房301,降噪房301主要分为3部分:燃机室302、发电机室303和控制室304。其中燃机室302主要安装燃气轮机309,通过燃气轮机309将烃类燃料化学能转换为机械能,用于导流助燃空气的进气室310,用于收集废气并导入到排气管道102的排气收集器308;发电机室303主要安装有将燃气轮机309的机械能转换为电能的发电机307;控制室304主要安装有电力单元305和控制系统306,电力单元305用于将发电机307的电对外输出,所述控制系统306包括燃机控制部分和发电机控制部分。发电运输装置300还可以包括图3中未展示出的辅助系统,所述辅助系统包括润滑系统、水洗系统、消防系统和启动系统等。
图5到图7是移动发电系统整体结构示意图。如图5所示,第一种实施例,排气运输装置100位于发电运输装置300的一个侧面,并使用排气伸缩接头101连接到发电运输装置300的排气收集器308,将废气通过排气管道102排放至大气。进气运输装置200位于排气运输装置100的对立侧面,进气运输装置200与发电运输装置300通过进气伸缩接头连接,具体的,通过助燃伸缩接头202、燃机室通风伸缩接头201连接,从而为发电运输装置300提供助燃空气和燃机室通风空气。如图6所示,第二种实施例,进气运输装置200位于排气运输装置100的同一侧面。如图7所示,第三种实施例,进气运输装置200与排气运输装置100在发电运输装置300的相邻两侧连接。
该移动发电系统的方法,包括以下步骤:
1)将燃气轮机309、进气室310、排气收集器308、发电机307、电力单元305,控制系统306安装到第一运输工具上;
2)将用于提供助燃空气和燃机室通风空气的进气组件203和进气伸缩接头安装在第二运输工具上,进气伸缩接头与进气组件203连接;
3)将排气管道102和排气伸缩接头101安装到第三运输工具上;
4)将第一运输工具移动至用户现场的指定位置,移动第二运输工具和第三运输工具至预定位置后,使用进气液压移动装置调节第二运输工具的水平、竖直位置,使进气伸缩接头与第一运输工具上的进气室310对接,使用排气液压移动装置调节第三运输工具的水平、竖直位置,使排气伸缩接头101与第一运输工具上的排气收集器308对接;
5)将第三运输工具上的排气管道102由水平位置旋转至竖直方向,排气管道102和排气伸缩接头101连接,将废气通过排气管道102排放至大气。
在对接时,排气伸缩接头101能够朝着排气收集器308伸展,进气伸缩接头能朝着进气室310和燃机室302伸展,当完成工作,需要拆离用户现场时,排气伸缩接头101能收缩并远离排气收集器308,进气伸缩接头能收缩并远离进气室310和燃机室302。
进气液压移动装置和排气液压移动装置结构相同,包括能够实现运输工具移动的支脚、外伸架、竖直液压缸和水平液压缸,支脚与外伸架连接,竖直液压缸用于实现支脚在竖直方向的移动,水平液压缸用于实现支脚在水平方向的移动。进气液压移动装置和排气液压移动装置降低了第二运输工具和第三运输工具的定位精度要求,减少了安装难度及安装时间。
Claims (10)
1.一种移动发电系统,包括进气运输装置、排气运输装置和发电运输装置;其特征在于:发电运输装置,包括燃气轮机、进气室、排气收集器、发电机和第一运输工具;
进气运输装置,包括进气组件和第二运输工具,进气组件用于提供助燃空气和燃机室通风空气;
排气运输装置,包括排气管道和第三运输工具;进气运输装置和排气运输装置连接到发电运输装置的侧面。
2.根据权利要求1所述的移动发电系统,其特征在于:所述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所述的移动发电系统,其特征在于:所述进气运输装置和排气运输装置通过伸缩接头连接到发电运输装置的至少一个侧面。
4.根据权利要求2所述的移动发电系统,其特征在于:所述进气运输装置设在排气运输装置的同侧或对侧或相邻侧。
5.根据权利要求1所述的移动发电系统,其特征在于:所述第一运输工具、第二运输工具和第三运输工具为拖车、卡车、滑动垫木或驳船中的至少一种。
6.根据权利要求1所述的移动发电系统,其特征在于:所述排气管道在运输状态下,水平设在排气运输装置上。
7.根据权利要求1所述的移动发电系统,其特征在于:所述排气管道在工作状态下,通过液压方式旋转至排气运输装置竖直方向上。
8.根据权利要求1所述的移动发电系统,其特征在于:所述发电运输装置还包括辅助系统,辅助系统用于辅助发电运输装置的运行。
9.根据权利要求1所述的移动发电系统,其特征在于:所述进气运输装置还包括进气液压移动装置,在安装对接时,进气液压移动装置用于调整进气运输装置与发电运输装置的相对位置。
10.根据权利要求1所述的移动发电系统,其特征在于:所述排气运输装置还包括排气液压移动装置,在安装对接时,排气液压移动装置用于调整排气运输装置与发电运输装置的相对位置。
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US11365615B2 (en) | 2020-07-17 | 2022-06-21 | Bj Energy Solutions, Llc | Methods, systems, and devices to enhance fracturing fluid delivery to subsurface formations during high-pressure fracturing operations |
US11920450B2 (en) | 2020-07-17 | 2024-03-05 | Bj Energy Solutions, Llc | Methods, systems, and devices to enhance fracturing fluid delivery to subsurface formations during high-pressure fracturing operations |
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US11603744B2 (en) | 2020-07-17 | 2023-03-14 | Bj Energy Solutions, Llc | Methods, systems, and devices to enhance fracturing fluid delivery to subsurface formations during high-pressure fracturing operations |
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US11732563B2 (en) | 2021-05-24 | 2023-08-22 | Bj Energy Solutions, Llc | Hydraulic fracturing pumps to enhance flow of fracturing fluid into wellheads and related methods |
US11639654B2 (en) | 2021-05-24 | 2023-05-02 | Bj Energy Solutions, Llc | Hydraulic fracturing pumps to enhance flow of fracturing fluid into wellheads and related methods |
US11867045B2 (en) | 2021-05-24 | 2024-01-09 | Bj Energy Solutions, Llc | Hydraulic fracturing pumps to enhance flow of fracturing fluid into wellheads and related methods |
US11994065B2 (en) | 2021-07-15 | 2024-05-28 | Yantai Jereh Petroleum Equipment & Technologies Co., Ltd. | Air supply device, gas turbine system and using method thereof |
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