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    • 3. 发明申请
    • ASSEMBLY AND SYSTEM FOR PUMPING A VOLUME OF FLUID THROUGH A BODY OF WATER
    • 用于通过水体泵送一定体积的流体的组件和系统
    • WO2018088887A1
    • 2018-05-17
    • PCT/MY2016/050077
    • 2016-11-17
    • S.RATNAM, Sri Skanda Rajah
    • S.RATNAM, Sri Skanda Rajah
    • F04B43/10B63B35/00B63B35/44F04B43/06E03B5/00
    • An assembly and system for pumping a volume of fluid over a body of water, comprising a shell (12) defining a volumetric space within a vessel (10) in which air is extractible from and introducible into, an opening (18) to allow air to be extracted from and supplied into the vessel (10) to allow fluid to be drawn in and expelled from the vessel (10), a first valve (16a) and a second valve (16b) to permit and restrict fluid entering and exiting the vessel (10) and a pump (20) to extract and introduce air from and into the vessel (10) to cause fluid to be drawn into and expelled out of the vessel (10). The vessel (10) floats in the body of water.
    • 一种用于在水体上泵送一定体积的流体的组件和系统,该组件和系统包括壳体(12),该壳体在容器(10)内限定容积空间,空气可从容器(10)中被抽出并且可被引入, 允许空气从容器(10)中提取并供应到容器(10)中以允许流体从容器(10)吸入和排出的开口(18),第一阀(16a)和第二阀(16b)至 允许并限制进入和离开容器(10)和泵(20)的流体以从容器(10)中提取空气并将空气引入容器(10)中,以使流体被吸入并排出容器(10)。 船(10)漂浮在水体中。
    • 4. 发明申请
    • 고압토출이 가능한 물이송장치
    • 高压排放水输送装置
    • WO2016209008A1
    • 2016-12-29
    • PCT/KR2016/006722
    • 2016-06-23
    • 박춘근
    • 박춘근
    • E03B5/00E03B7/09E03B11/02
    • E03B5/02E03B5/00E03B7/09E03B11/02E03B11/10Y02A20/106
    • 본 발명은 고압토출이 가능한 물이송장치에 관한 것으로, 복수의 가압배출장치를 통해 수조의 물을 고압으로 토출하여 물공급이 어려운 고층건물이나 멀리 떨어진 장소 또는 다량의 물이 필요한 공장 등에 효과적으로 물을 이송할 수 있도록 한 고압토출이 가능한 물이송장치에 관한 것이다. 즉, 본 발명은 물이 저장되는 수조, 상기 수조 내에 복수개의 가압배출장치가 설치되며, 상기 가압배출장치는 수조내의 물이 흡입구를 통해 수용되는 저장부와, 상기 저장부에 담겨지는 물을 배출구 방향으로 배출시키는 가압부재와, 상기 가압부재가 승강 작동될 수 있도록 한 유압작동부로 이루어지고, 상기 가압배출장치의 배출구와 연결된 복수의 배출관로, 상기 복수의 배출관로와 연결되어 합류된 물이 고압으로 집수 되고 토출방향으로 갈수록 좁아지는 형태의 집수부, 상기 집수부의 좁아진 단부에 설치되어 고압수가 토출되는 토출부로 이루어지는 것을 특징으로 한다.
    • 本发明涉及一种能够进行高压排放的输水装置,其能够有效地将水输送到难以供应水的高层建筑物或偏远地方,或者通过排放需要大量水的工厂等 通过多个加压排气装置在高压下从水箱中取水。 也就是说,本发明包括:储存水的水箱; 安装在水箱内的多个加压排气装置; 连接到加压排气装置的出口的多个排气管; 与所述多个排气管连接的收集部,所述多个排气管在高压下收集接合的水,并且具有朝向排出方向逐渐变细的形状; 以及安装在集水部的锥形端部的排出部,高压水通过该排出部排出,其特征在于,所述加压排气装置包括:通过所述入口保持所述水箱内的水的收纳部; 将存储部件中的水排出到出口的加压构件; 以及液压操作部件,其构造成使加压部件升高。
    • 5. 发明申请
    • APPARATUS FOR CONTROLLING THE RISE OF DEEP SEA WATER
    • 控制深海潜水的装置
    • WO2012039562A3
    • 2012-05-31
    • PCT/KR2011006859
    • 2011-09-16
    • SHIM SOUNG KUNYOO DONG HO
    • SHIM SOUNG KUNYOO DONG HO
    • E03B3/04E03B5/00
    • E03B3/04E02B1/003
    • The present invention relates to an apparatus for controlling rise of deep sea water. The disclosed apparatus for controlling rise of deep sea water comprises: a storage container which is installed in an offshore structure and separated from seawater, and which has a lower end arranged below the surface of the sea to contain deep sea water at the level of the sea surface in a storage space thereof; and a fixed pipe which is inserted and fixed to the lower end of the storage container and in communication with the storage space, and the lower end of which is installed in the seabed so as to introduce deep sea water, and the upper end of which is arranged lower than the sea surface so as to enable deep sea water to be contained in the storage container by a pressure difference. When the deep sea water contained in the storage container is pumped to the outside, the level of the water in the storage space is lowered and the deep sea water rises through the fixed pipe and continuously flows into the storage space.
    • 本发明涉及一种用于控制深海水上升的装置。 所公开的用于控制深海水上升的装置包括:储存容器,其安装在海上结构中并与海水分离,并且具有布置在海面以下的下端,以在海平面以下的深度海水 在其存储空间中的海面; 以及固定管,其插入并固定到储存容器的下端并与储存空间连通,并且其下端安装在海床中以引入深海水,并且其上端 布置成低于海面,以使深海水能够通过压力差容纳在储存容器中。 当储存容器内容纳的深海水被泵送到外部时,储存空间中的水位降低,深海水通过固定管道上升并持续流入储存空间。
    • 6. 发明申请
    • 給水装置
    • 供水
    • WO2009093750A1
    • 2009-07-30
    • PCT/JP2009/051389
    • 2009-01-22
    • 株式会社 荏原製作所小松崇秀金田一宏手嶋友治檜垣展宏宮内祥子
    • 小松崇秀金田一宏手嶋友治檜垣展宏宮内祥子
    • E03B11/16E03B5/00F04B49/06F04D15/00
    • E03C1/025F04B41/06F04D15/0066F04D15/029G05B9/03Y10T137/86131Y10T137/86163
    • 一方の制御基板が機能しなくなった場合でも、他方の制御基板により確実にバックアップができる給水装置を提供する。 複数のポンプ(3)と、対応するポンプの回転周波数を可変制御する複数のインバータ(INV)と、複数のインバータを制御する複数の制御基板(CN)とを備え、一方の制御基板に異常が発生した場合に、他方の制御基板が一方の制御基板をバックアップすることで運転を継続することができる給水装置(1)であって、一方の制御基板から複数のインバータを経て他方の制御基板までの間を、通信線により直列に接続し、通信線上に、通信をON/OFFするスイッチ(SW1)を設けた。又は、各制御基板から、それぞれ異なる通信線により直列に複数のインバータを接続した。又は、各制御基板に繋がる系統の外的要因に対する耐性のレベルを異ならせた。
    • 供水(1),即使一个控制板发生故障,另一个控制板可以可靠地接管控制。 供水(1)包括用于可变地控制各个泵的旋转频率的泵(3),逆变器(INV)以及用于控制逆变器的控制板(CN)。 如果其中一个控制板发生故障,则另一个控制板代替一个控制板进行控制,以继续操作。 一个控制板通过变频器通过通信电缆串联连接到另一个。 用于启动/停止通信的开关(SW1)安装在通信电缆中。 或者,控制板通过不同的通信电缆串联连接到逆变器。 或者,连接到控制板的系统的外部因素的电阻水平是不同的。
    • 10. 发明申请
    • CONTROL SYSTEM AND METHOD FOR WATER SUPPLY
    • 供水控制系统及方法
    • WO2010022442A1
    • 2010-03-04
    • PCT/AU2009/001087
    • 2009-08-25
    • H2O ORGANIZER PTY LTDPORTER-COOTE, Robert
    • PORTER-COOTE, Robert
    • E03B5/00E03B11/16E03B1/00F04B49/06
    • F04D15/0209E03B1/04E03B1/042E03B7/071Y02A20/15Y10T137/0396Y10T137/7723Y10T137/7761Y10T137/85978Y10T137/86405Y10T137/86413
    • Known water supply systems are fed from a source of water such as a tank (6) via a pump (5) to outlets which are occludable by means of a cock (C1-C3). A water pressure sensitive electrical switch (S1) is located downstream of the pump (5) and upstream of the outlets. The switch (S1) is connected in series with an electrical supply for the pump and turns the pump on in response in a drop in water pressure downstream of the switch. Similarly the pump is turned off in response to water pressure downstream to the switch reaching a predetermined minimum pressure, A control system is disclosed in the form of a timer (T) connected in parallel with the pump (5) and energized via the switch (S1). A normally closed safeguard switch (S2) is connected in series with the pump and rendered non-conductive by the timer (T) being energized for a predetermined period. The safeguard switch (S2) prevents the pump (5) operating continuously for more than a predetermine period, typically 15-30 minutes, As a consequence leaks in the system supplied by the pump (5) do not result in excessive water loss from the tank (6), A system and method to prevent water loss in a reticulated town water supply system is also disclosed by means of a flow detector (FD), a timer (T) and a normally open solenoid valve (SV).
    • 已知的供水系统通过泵(5)从诸如罐(6)的水源供给到通过旋塞(C1-C3)可封闭的出口。 水压敏电气开关(S1)位于泵(5)的下游和出口的上游。 开关(S1)与泵的电源串联连接,并且在开关下游的水压下降时响应于开启泵。 类似地,响应于开关下游的水压达到预定的最小压力,泵被关闭。控制系统以与泵(5)并联连接的定时器(T)的形式被公开,并且经由开关 S1)。 常闭保护开关(S2)与泵串联连接,定时器(T)通电一段预定时间,使其不导通。 保护开关(S2)防止泵(5)连续运转超过预定时间,通常为15-30分钟。因此,由泵(5)提供的系统中的泄漏不会导致从 罐(6),通过流量检测器(FD),定时器(T)和常开电磁阀(SV)也公开了一种防止网状镇水供水系统中的水分流失的系统和方法。