CN104074500A - 一种输送支撑剂的设备 - Google Patents
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Abstract
本发明公开了一种输送支撑剂的设备,包括具有进料口和出料口的过渡储罐;具有进料口和排料口的星型卸料器,且星型卸料器的进料口与过渡储罐的出料口连通;具有进料口和出料口的发送罐,且发送罐的进料口与星型卸料器的排料口连通;输送管路,输送管路的内部与发送罐的出料口之间通过连接管路连通,且连接管路上串接有卸料阀门;设置于输送管路的一端的风机,还包括驱动风机转动的第一驱动装置。本设备中利用风机产生的流量和压力将支撑剂送入具有一定高度的立式砂罐中,其可以仅仅将输送管路的一端与立式砂罐连通即可,而发送罐和过渡储罐的位置均可以设置较低,便于将支撑剂输送至过渡储罐中,进而可以方便的将支撑剂输送至立式砂罐中。
Description
技术领域
本发明涉及油田技术领域,更具体地说,涉及一种输送支撑剂的设备。
背景技术
压裂是指采油或采气过程中,利用水力作用,使油气层形成裂缝的一种方法,又称水力压裂。油气层压裂工艺过程中一般使用压裂车把高压大排量具有一定粘度的液体挤入油层,当把油层压出许多裂缝后,加入支撑剂(如石英砂等)充填进裂缝,提高油气层的渗透能力,以增加注水量或产油量。
目前,国内压裂用支撑剂主要采用袋装存储便于运输,在压裂现场一般采用卧式砂罐存储。使用时,采用破袋器将袋装支撑剂破袋后装入卧式砂罐中进行存储;或者采用散装式砂罐车将支撑剂输送至卧式砂罐中进行存储。然而卧式砂罐的长度有十几米,其放置时,占用体积较大,因此为了节省安装空间出现了很多立式砂罐,然而立式砂罐的进料口较高,使用砂罐车很难将支撑剂输送至具有一定高度的立式砂罐中,因此限制了立式砂罐的使用。
综上所述,如何方便的将支撑剂输送至具有一定高度的立式砂罐中,是目前本领域技术人员急需解决的问题。
发明内容
有鉴于此,本发明的目的在于提供一种输送支撑剂的设备,该输送支撑剂的设备可以方便的将支撑剂输送至具有一定高度的立式砂罐中。
为了达到上述目的,本发明提供如下技术方案:
一种输送支撑剂的设备,包括:
具有进料口和出料口的过渡储罐;
具有进料口和排料口的星型卸料器,且所述星型卸料器的进料口与所述过渡储罐的出料口连通;
具有进料口和出料口的发送罐,且所述发送罐的进料口与所述星型卸料器的排料口连通;
输送管路,所述输送管路的内部与所述发送罐的出料口之间通过连接管路连通,且所述连接管路上串接有卸料阀门;
设置于所述输送管路的一端的风机,还包括驱动所述风机转动的第一驱动装置。
优选地,上述输送支撑剂的设备中,所述过渡储罐、星型卸料器和发送罐由上至下沿着竖直方向排布。
优选地,上述输送支撑剂的设备中,还包括撬架,所述过渡储罐、星型卸料器和发送罐均固定于所述撬架上。
优选地,上述输送支撑剂的设备中,还包括设置于所述过渡储罐的进料口处的破袋器。
优选地,上述输送支撑剂的设备中,还包括传送带输送机,所述传送带输送机的传送带倾斜设置且其出料口位于所述过渡储罐的进料口处。
优选地,上述输送支撑剂的设备中,所述传送带输送机具体为封闭的波状挡边带式输送机。
优选地,上述输送支撑剂的设备中,还包括能够控制所述传送带输送机、风机、卸料阀门以及星型卸料器的工作状态的控制箱。
优选地,上述输送支撑剂的设备中,所述第一驱动装置具体为电机或者液压马达。
优选地,上述输送支撑剂的设备中,所述发送罐的内壁上还固定有流化器,且所述流化器通过串接有阀门的连接管路与风机的出口连通。
本发明提供的输送支撑剂的设备包括过渡储罐、星型卸料器、发送罐、输送管路、风机和第一驱动装置,其中过渡储罐和发送罐均具有进料口和出料口,星型卸料器具有进料口和排料口,并且星型卸料器的进料口与过渡储罐的出料口连通,星型卸料器的排料口与发送罐的进料口连通,发送罐的出料口与输送管路的内部通过连接管路连通,并且在连接管路上串接有卸料阀门。风机设置于输送管路的一端,输送管路的另一端可以直接与立式砂罐的进料口连通,即连接管路直接设置在输送管路的壁上,输送管路的与发送罐的出料口连通的位置位于输送管路的两端之间。第一驱动装置可以驱动风机转动。
应用本发明提供的输送支撑剂的设备时,可以直接通过翻斗车或者砂罐车将支撑剂输送至过渡储罐的进料口处,进而将支撑剂输送至过渡储罐中,过渡储罐中的支撑剂从其出料口排出后进入星型卸料器,进而经星型卸料器进入发送罐,发送罐中的支撑剂经连接管路和卸料阀门进入输送管路,由于输送管路的一端设置有向其中鼓风的风机,因此支撑剂进入输送管路中后能够被吹入立式砂罐中。本输送支撑剂的设备中利用风机产生的流量和压力将支撑剂送入立式砂罐,其可以仅仅将输送管路的一端与立式砂罐连通即可,而发送罐和过渡储罐的位置均可以设置较低,便于将支撑剂输送至过渡储罐中,进而可以方便的将支撑剂输送至立式砂罐的进料口。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明一种实施例提供的支撑剂的输送设备的系统图;
图2为本发明另一种实施例提供的支撑剂的输送设备的系统图;
图3为本发明实施例提供的支撑剂的输送设备的结构图。
附图中标记如下:
1-传送带输送机、1a-进料斗、2-过渡储罐、3-星型卸料器、4-立式砂罐、5-输送管路、6-发送罐、7-卸料阀门、8-风机、9-破袋器、10-撬架。
具体实施方式
本发明的目的在于提供一种输送支撑剂的设备,该输送支撑剂的设备可以方便的将支撑剂输送至具有一定高度的立式砂罐中。
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1-图3,本发明实施例提供的输送支撑剂的设备包括过渡储罐2、星型卸料器3、发送罐6、输送管路5、风机8和第一驱动装置,其中过渡储罐2和发送罐6均具有进料口和出料口,星型卸料器3具有进料口和排料口,并且星型卸料器3的进料口与过渡储罐2的出料口连通,星型卸料器3的排料口与发送罐6的进料口连通,发送罐6的出料口与输送管路5的内部通过连接管路连通,并且在连接管路上串接有卸料阀门7。风机8设置于输送管路5的一端,输送管路5的另一端可以直接与立式砂罐4的进料口连通,即连接管路直接设置在输送管路5的壁上,输送管路5的与发送罐6的出料口连通的位置位于输送管路5的两端之间。第一驱动装置可以驱动风机8转动。
应用本发明实施例提供的输送支撑剂的设备时,可以直接通过散装式砂罐车将支撑剂输送至过渡储罐2的进料口处,进而将支撑剂输送至过渡储罐2中,过渡储罐2中的支撑剂从其出料口排出后进入星型卸料器3,进而经星型卸料器3进入发送罐6,发送罐6中的支撑剂经连接管路和卸料阀门7进入输送管路5,由于输送管路5的一端设置有向其中风机8,风机8可以向输送管路中输送具有一定压力和一定流量风力,因此支撑剂进入输送管路5中后能够被气力输送至立式砂罐4中。本输送支撑剂的设备中利用风机8产生的流量和压力将支撑剂送入立式砂罐4,其可以仅仅将输送管路5的一端与立式砂罐4连通即可,而发送罐6和过渡储罐2的位置均可以设置较低,便于将支撑剂输送至过渡储罐2中,进而可以方便的将支撑剂输送至立式砂罐4的进料口。
其中,为了使支撑剂更加快速方便的从过渡储罐2中进入星型卸料器3和发送罐6,其中过渡储罐2、星型卸料器3和发送罐6三者可以由上至下沿着竖直方向排布,如此支撑剂可以靠重力进入星型卸料器3,进而靠动力驱动的星形卸料器3将定量的支撑剂输入发送罐6中。当然,过渡储罐2、星型卸料器3和发送罐6三者可以由上至下排布,且可以不沿着竖直方向,在此不作限定。
另外,为了便于搬运该输送支撑剂的设备,该设备还可以包括撬架10,并且过渡储罐2、星型卸料器3和发送罐6均固定于撬架10上,如此将过渡储罐2、星型卸料器3和发送罐6集成在撬架10上,搬运时直接移动该撬架10即可。
由于支撑剂一般为袋装,为了更加快速的将支撑剂置于过渡储罐2中,还可以在过渡储罐2的进料口处设置破袋器9。如此可以利用吊车将袋装的支撑剂提升至过渡储罐2的进料口处,进而通过破袋器9破袋后,支撑剂直接进入过渡储罐2中,如此设置更加快捷。
另外,该输送支撑剂的设备还可以包括传送带输送机1,传送带输送机1的传送带倾斜设置且其出料口位于过渡储罐2的进料口处,即通过散装式砂罐车运送的支撑剂可以直接卸至传送带输送机1的传送带上,进而通过输送带输送至过渡储罐2的进料口处进入过渡储罐2,如此设置可以将散装式砂罐车中的支撑剂直接输送至过渡储罐2中,更加省时省力。
进一步地,传送带输送机1可以具体为封闭的波状挡边带式输送机,如此则可以减小支撑剂输送过程对环境的影响。传送带输送机1上应该设置有进料斗1a。当然,传送带输送机1也可以为开放式的,在此不作限定。
其中,为了便于控制传送带输送机1、风机8、卸料阀门7以及星型卸料器3的工作状态,该设备还可以包括能够控制传送带输送机1、风机8、卸料阀门7以及星型卸料器3的工作状态的控制箱,如此便可以方便地根据实际工况进行参数调整,以及对整机进行系统控制。
优选地,第一驱动装置可以具体为电机或者液压马达,在此不作限定。
另外,发送罐6的内壁上还固定有流化器,且流化器通过串接有阀门的连接管路与风机的出口连通,如此风机输出的具有一定压力和一定流量风力进入发送罐中经流化器将支撑剂流化,流化的支撑剂从发送罐的出料口排出进入输送管路5。
本说明书中各个实施例采用递进的方式描述,每个实施例重点说明的都是与其他实施例的不同之处,各个实施例之间相同相似部分互相参见即可。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本发明。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本发明的精神或范围的情况下,在其它实施例中实现。因此,本发明将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。
Claims (9)
1.一种输送支撑剂的设备,其特征在于,包括:
具有进料口和出料口的过渡储罐(2);
具有进料口和排料口的星型卸料器(3),且所述星型卸料器(3)的进料口与所述过渡储罐(2)的出料口连通;
具有进料口和出料口的发送罐(6),且所述发送罐(6)的进料口与所述星型卸料器(3)的排料口连通;
输送管路(5),所述输送管路(5)的内部与所述发送罐(6)的出料口之间通过连接管路连通,且所述连接管路上串接有卸料阀门(7);
设置于所述输送管路(5)的一端的风机(8),还包括驱动所述风机(8)转动的第一驱动装置。
2.根据权利要求1所述的输送支撑剂的设备,其特征在于,所述过渡储罐(2)、星型卸料器(3)和发送罐(6)由上至下沿着竖直方向排布。
3.根据权利要求1所述的输送支撑剂的设备,其特征在于,还包括撬架(10),所述过渡储罐(2)、星型卸料器(3)和发送罐(6)均固定于所述撬架(10)上。
4.根据权利要求1所述的输送支撑剂的设备,其特征在于,还包括设置于所述过渡储罐(2)的进料口处的破袋器(9)。
5.根据权利要求1所述的输送支撑剂的设备,其特征在于,还包括传送带输送机(1),所述传送带输送机(1)的传送带倾斜设置且其出料口位于所述过渡储罐(2)的进料口处。
6.根据权利要求5所述的输送支撑剂的设备,其特征在于,所述传送带输送机(1)具体为封闭的波状挡边带式输送机。
7.根据权利要求5所述的输送支撑剂的设备,其特征在于,还包括能够控制所述传送带输送机(1)、风机(8)、卸料阀门(7)以及星型卸料器(3)的工作状态的控制箱。
8.根据权利要求1所述的输送支撑剂的设备,其特征在于,所述第一驱动装置具体为电机或者液压马达。
9.根据权利要求1所述的输送支撑剂的设备,其特征在于,所述发送罐(6)的内壁上还固定有流化器,且所述流化器通过串接有阀门的连接管路与风机的出口连通。
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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 |
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 |
US11255175B1 (en) | 2020-07-17 | 2022-02-22 | Bj Energy Solutions, Llc | Methods, systems, and devices to enhance fracturing fluid delivery to subsurface formations during high-pressure fracturing operations |
US11193360B1 (en) | 2020-07-17 | 2021-12-07 | Bj Energy Solutions, Llc | Methods, systems, and devices to enhance fracturing fluid delivery to subsurface formations during high-pressure fracturing operations |
US11994014B2 (en) | 2020-07-17 | 2024-05-28 | Bj Energy Solutions, Llc | Methods, systems, and devices to enhance fracturing fluid delivery to subsurface formations during high-pressure fracturing operations |
US11193361B1 (en) | 2020-07-17 | 2021-12-07 | Bj Energy Solutions, Llc | Methods, systems, and devices to enhance fracturing fluid delivery to subsurface formations during high-pressure fracturing operations |
US11608727B2 (en) | 2020-07-17 | 2023-03-21 | Bj Energy Solutions, Llc | Methods, systems, and devices to enhance fracturing fluid delivery to subsurface formations during high-pressure fracturing operations |
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 |
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 |
CN113818856A (zh) * | 2021-09-22 | 2021-12-21 | 烟台杰瑞石油装备技术有限公司 | 压裂作业船 |
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