序号 | 专利名 | 申请号 | 申请日 | 公开(公告)号 | 公开(公告)日 | 发明人 |
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121 | 一种高层楼房的消防装置 | CN201510959191.9 | 2015-12-21 | CN105464172A | 2016-04-06 | 李群; 韩迪; 杨冬冬 |
本发明是一种高层楼房的消防装置,属于消防栓设施技术领域,包括消防栓、控制系统、阀门开关、管道、除污装置、水箱、过滤箱和感应器,包括水箱、水管、管道Ⅰ、中枢系统、消防装置、楼房、卡扣装置和管道Ⅱ,所述的中枢系统是由操作面板、电源、单片机、阀门和分析处理器组成,所述的消防装置是由三通管、控制器、水阀开关、抽水泵、接头、软管和水枪组成,卡扣装置是由挡片、圆孔和伸缩装置组成,所述的伸缩装置是由外壳Ⅰ、外壳Ⅱ、圆盘、连接轴、引线、轴承、弹簧、环扣、凹槽Ⅰ和凹槽Ⅱ组成;可以使消防栓的水压可以达到使用的标准,不需要临时安装辅助装备,不会耽误救火的第一时间,人身安全和财产得到保障。 | ||||||
122 | 管网叠压消火栓供水系统 | CN201410566995.8 | 2014-10-23 | CN104846927A | 2015-08-19 | 不公告发明人 |
本发明公开了管网叠压消火栓供水系统主要由过滤器、倒流防止器、消防泵、气压水罐、压力控制器、控制柜、稳压阀、水泵接合器、消火栓和高位水箱增压稳压装置组成,所述消防泵包括2~4台并联设置,消防泵进水与配水总管连接,配水总管上装设有压力检测表,用以监测进水压力和保护消防泵,配水总管两端分别连接自来水管A和自来水管B两路进水,当其中一路进水出现故障时,另一路进水仍能保证提供充足的水源,在自来水管A和自来水管B各自沿水流方向顺次设有负压表、过滤器和倒流防止器。本发明的有益效果是,本发明采用直接串接管网叠压供水方式,并保障消防灭火安全与控制,具有占地少、投资省、安装方便等优点。 | ||||||
123 | 一种利用坡面流水和路面水作为水源的隧道消防系统 | CN201410829171.5 | 2014-12-25 | CN104674890A | 2015-06-03 | 张恒; 龙万学; 史文洁; 陈松艳; 曾庆展; 廖斌 |
本发明公开了一种利用坡面流水和路面水作为水源的隧道消防系统,包括排水沟、纵向排水沟、边沟、横向排水管、路面急流槽、截排水沟以及修建在所述隧道附近的滤水池、沉沙井、低位水池、泵房、高位水池以及隧道消防栓;通过利用坡面流水和路面水作为水源,可保证蓄水池充足的蓄水量,同时降低成本;在山坡的多个等高线上修筑截排水沟收集坡面雨水,使得采集水源更加方便,成本也较低;同时采用路面水作为水源,对坡面流水进行补充,使得水源更加充足;通过设置低位水池、泵房和高位水池,可自动对隧道消防栓提供水压。 | ||||||
124 | 一种利用坡面流水作为水源的隧道消防系统 | CN201410828441.0 | 2014-12-25 | CN104652532A | 2015-05-27 | 张恒; 唐志; 刘筑; 廖斌; 陈松艳; 李少娜 |
本发明公开了一种利用坡面流水作为水源的隧道消防系统,通过利用坡面流水作为水源,可保证蓄水池充足的蓄水量,同时降低成本;在山坡的多个等高线上修筑截排水沟收集坡面雨水,使得采集水源更加方便,成本也较低;通过设置低位水池、泵房和高位水池,可自动对隧道消防栓提供水压;设置压力传感器,对沉沙井中泥沙的多少进行检测,当泥沙过多时,向隧道消防系统的控制中心发送无线报警信号,提示工作人员对沉沙井的泥沙进行清理,避免沉沙井泥沙过多导致堵塞联通低位水池的管道,致使低位水池无法蓄水,造成隧道消防无水可用。 | ||||||
125 | 变电站消防蓄水、给水智能控制系统及控制方法 | CN201110332189.0 | 2011-10-27 | CN102433913B | 2012-11-07 | 周志勇; 张达; 信珂; 綦滔; 李艳丽; 王毅; 甘露; 张航; 张凡; 邹振宇; 崔海鹏; 张涛 |
本发明公开了一种变电站消防蓄水、给水智能控制系统,其特征是,它包括与蓄水池连接的补水管道,所述消防管网上设有增压装置以及数据采集变送器,所述数据采集变送器与数据采集模块电连接,所述数据采集模块与控制装置电连接,所述控制装置与人机对话装置电连接,所述控制装置还与至少一组被控单元电连接,所述被控单元包括与控制装置电连接的至少一组软启动器以及与软启动器电连接的至少一组消防泵,同时,所述控制装置通过通讯网络与至少一台上位机电连接本发明的有益效果是系统蓄水池的液位数据,包括监控水位、实际水位、警戒水位得到有效检测。采用软启动器启动方式系统拥有故障记录存储功能。 | ||||||
126 | 一种控水器 | CN201210185535.1 | 2012-05-31 | CN102704537A | 2012-10-03 | 朱奎 |
本发明公开了一种控水器,其特征是包括出水接管,出水接管一端带有接头,出水接管下侧固定有支架,支架带有架杆,另一端带有龙头,龙头配置有控制手柄,出水接管上配置有控制水流通断的控制装置,该控制装置带有控制杆,控制杆一端与控制装置铰接,控制杆另一端与第一连杆一端铰接,第一连杆另一端与第二连杆的一端铰接,第二连杆与第三连杆一端铰接,第二连杆中部与支架的架杆铰接,第三连杆另一端与浮球铰接。本发明实用便捷。 | ||||||
127 | 无污染生活消防两用二次供水系统 | CN01123632.9 | 2001-08-20 | CN1137318C | 2004-02-04 | 卢培铨 |
本发明是设置生活储水装置、消防专用储水装置代替传统高位水箱二次供水系统的混合储水的高位水箱(水塔),生活和消防专用二个储水装置分别向生活设施、消防设施供水,把消防用水独立出来而与生活用水隔离开,形成消防独立储水、消防储水不会向生活用水扩散的无污染供水系统,根源性地消除了现有二次供水系统的水污染,克服了技术偏见,具备经济、节电、可靠性高等优点,具有显著经济效益和社会效益。 | ||||||
128 | 为建筑物供水的成套设备及其供水方法 | CN02109779.8 | 2002-06-03 | CN1464146A | 2003-12-31 | 初生君 |
本发明涉及一种为建筑物供水的成套设备及其方法,包括用来为两组管路组件其中之一给水的水泵组和控制水泵组按预定程序给水的操作组件,以及设置在两组管路组件之间或其输入端的切换组件。通过切换节省一套水泵组,以降低设备成本。当建筑物较高时,事先确定出几个供水区段,并计算出每一个供水区段水压的最大值,然后选择与各区段水压的最大值相对应的水泵组,最后再将与切换组件电连接的阀门部件安装在各供水区段管路组件的输入端及水泵组的前部,以获得最佳的供水方式。 | ||||||
129 | COLD WATER DELIVERY SYSTEM | EP13831482.8 | 2013-08-22 | EP2892842A1 | 2015-07-15 | SHAW, Damon D.; SAVONI, Franco; HANSEN, Russ; FULFORD, Evan A.; LEISER, Joel E. |
A cold water delivery system is described that can consistently provide cold water at a desired temperature over repetitive and large draws from the outlet of the system. The cold water system can provide multiple pathways for the water to travel from a source, or inlet, to the outlet. A cooling system can be provided that cools a plurality of reservoirs of water. The reservoirs can maintain cold water at different temperatures. A control system controls the cooling system to maintain the temperature of the water in the reservoirs. The control system can also control one or more mixing valves to determine the volume of water from each of the reservoirs and the water inlet that reaches the outlet. | ||||||
130 | Hydrant | EP97102883.2 | 1997-02-21 | EP0791695B1 | 2003-05-14 | Schütz, Norbert |
131 | Device for temporarily rinsing a water cock sunk in the ground | EP81201049.4 | 1981-09-18 | EP0048527A1 | 1982-03-31 | Snoek, Govert Johannes; Tuil, William Johannes |
The invention relates to a device for temporarily rinsing a water cock countersunk in the ground and being extensible by means of an extension piece in conjunction with a closing member above the ground. The invention has for its object to provide a device which fully automatically conducts away the dirt accumulated in the area of the valve without the risk of dirt getting into the water mains. To this end the invention provides a device of the type referred to in the preamble which comprises a drain pipe connectable between the water cock and the closing member of the extension piece, said pipe including a valve body closing the drain pipe with a delay by the water pressure prevailing in the extension piece when the water cock is opened. |
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132 | Borne fixe de jonction et de raccordement pour l'asservissement de locaux fixes ou mobiles notamment pour l'alimentation d'une unité sanitaire pouvant elle-même être rattachée à une caravane ou à un camping-car | EP80400522.1 | 1980-04-18 | EP0018289A1 | 1980-10-29 | Jambry, Jean-François; Milojevic, Dusica |
Borne de jonction et de raccordement entre d'une part, un réseau d'alimentation en eau potable et un réseau électrique et d'autre part, une unité sanitaire fixe ou mobile, cette borne assurant également la connexion entre cette unité et un réseau d'évacuation des eaux vannes et des eaux ménagères. Borne caractérisée en ce qu'elle est constituée d'un bloc en matériau résistant forme de deux cellules dont la principale est encastrée dans le sol mais effleure celui-ci, tandis que l'autre forme la partie émergeante de la borne, ce bloc étant pourvu de raccords rapides (7-9-14-29-30-37-35) pour sa jonction avec l'unité sanitaire dotée de raccords complémentaires, ledit bloc regroupant dans sa cellule inférieure le réseau d'évacuation des eaux vannes (22-34) et des eaux ménagères (32-28) et dans sa partie supérieure le réseau d'alimentation en eau potable (5) ainsi que le réseau électrique (11). |
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133 | Self-contained hydrant monitoring system | US17735363 | 2022-05-03 | US11619033B2 | 2023-04-04 | Timofey Sitnikov; Paul S. Gifford; Carlos Stephen Moreno; Diego Aguilera; Daryl Lee Gibson |
A sensing device for a hydrant, the sensing device including a housing defining a portion of an operating stem of the hydrant; a sensor located entirely within the interior cavity of the hydrant body and configured to measure a property of a fluid of the fluid distribution system; and an antenna in communication with the sensor and positioned within the housing. | ||||||
134 | Fire hydrant assembly | US16293934 | 2019-03-06 | US10518118B2 | 2019-12-31 | Thomas Todd Traphagan; Cody James Bakker |
A fire hydrant assembly for use with an irrigation riser stub may include a generally cylindrically-shaped main body having an open end and a closed end. The open end of the main body has an inside diameter that is sized to slidably receive an end portion of the irrigation riser stub. A seal disposed within the open end of the main body is sized to sealingly engage the irrigation riser stub. A nipple having a threaded end and a plain end is mounted within an opening provided in a side portion of the main body so that the threaded end may be threaded onto a fire hose assembly. An actuator shaft extends through a shaft opening defined by the closed end of the main body so that a head end of the actuator shaft is disposed outside the main body and so that a distal end of the actuator shaft is disposed within an interior cavity defined by the main body. A yoke mounted to the distal end of the actuator shaft is sized to operatively engage a valve stem associated with the irrigation riser stub. | ||||||
135 | Method of installing an emergency flow restrictor device (EFRD) on a pipeline | US14674237 | 2015-03-31 | US09581259B2 | 2017-02-28 | William Baker |
A method of installing an Emergency Flow Restrictor Device (EFRD) on a pipeline without stopping the flow of fluid through the pipeline includes the steps of: assembling first and second face plates on a pipeline such that the first and second sealing face are in face to face, spaced relation; assembling a cutting device between the first face plate and the second face plate; assembling a valve body that has an access opening on a length of pipeline such that the valve body encloses the first and second face plates and the cutting device; installing an access valve on the access opening; operating the cutting device to sever the pipeline between the first and second sealing faces; retracting the cutting device and severed section of pipeline; and attaching a valve gate member of the EFRD to the access opening. | ||||||
136 | NOZZLE POSITIONING ASSEMBLY FOR A FOUNTAIN SYSTEM | US13297021 | 2011-11-15 | US20130119149A1 | 2013-05-16 | Kevin Thomas Brown; Cesar Javier Trejo; Tim O'Brien; David Olvera; Kenneth Lee Krauskopf |
A nozzle positioning assembly includes a first support shaft, a second support shaft, a first position adjustment assembly, a second position adjustment assembly, and a hub. The first and second support shafts have respective bodies with a center aperture, a spherical first end, and a second end opposite the spherical first end. The first and second position adjustment assembly include first and second link mounting ears positioned circumferentially from one another. The first position adjustment assembly is adapted to be affixed to the second end of the first support shaft and the second position adjustment assembly is adapted to be affixed to the second end of the second support shaft. The hub has a first end configured to receive and rotatably retain the spherical first end of the first support shaft, and a second end configured to receive and rotatably retain the spherical first end of the second support shaft. | ||||||
137 | Pneumatic system for a vitrector | US11614678 | 2006-12-21 | US08312800B2 | 2012-11-20 | Denis Turner; Robert Palino; Argelio Olivera; Mark Hopkins |
A system for providing pneumatic power to a vitrector includes first and second output ports, an output valve, an isolation valve, and three manifolds. The first and second output ports provide pressurized gas to power a vitrector. The output valve alternately provides pressurized gas to the first and second output ports. The isolation valve provides pressurized gas to the output valve. Two manifolds fluidly connect the output valve to the first and second output ports. A third manifold fluidly connects the isolation valve to the output valve. When the isolation valve provides pressurized gas to the output valve, the output valve operates at a high rate of speed to alternately provide pressurized gas to the first and second output ports thereby powering the vitrector. | ||||||
138 | SPOUT TIP RETENTION METHOD | US12237811 | 2008-09-25 | US20100071778A1 | 2010-03-25 | Alfred C. Nelson; Jeffrey L. Moore; Kurt J. Thomas |
An apparatus and method for assembling a faucet spout to retain a tube within a body of the faucet spout. | ||||||
139 | SPOUT MOUNTING | US12117243 | 2008-05-08 | US20090276954A1 | 2009-11-12 | Kyle Robert Davidson |
A spout retention device is disclosed which mounts a spout to a support member. The spout retention device may keep the spout is a spaced apart relationship relative to the support member and may be made of an insulating material. | ||||||
140 | Flush hydrant | US36977 | 1987-04-06 | US4756479A | 1988-07-12 | George I. Lazenby, III |
A flush hydrant for purging waterline systems of subdivisions, rural districts, etc. The flush hydrant is used in lieu of a typical fire hydrant for purging such waterlines of foreign matter which may have infiltrated the waterline system as a result of line breakage. The flush hydrant includes a barrel generally having an upper portion extending above ground and a lower portion below ground. The hydrant includes a ball valve assembly mounted in the lower portion of the barrel and an operating rod extending above ground from the valve assembly. The rod operates a closure member in the ball valve between open and closed positions. The closure member is provided with a primary passageway to direct water into the barrel and out of a nozzle secured thereto, and, with secondary passageways to drain water from the barrel to the outside of the assembly after the valve has been closed by the closure member. |