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渣漿泵心泵的工作原理
添加時(shí)間:2020.01.16

渣漿泵心泵的工作原理
1-5是離心泵的一般裝置示意圖。
    由于離心泵本身不能排除氣體,離心泵在啟動(dòng)之前,泵內(nèi)應(yīng)灌滿液體,這個(gè)過(guò)程稱為灌泵。啟泵時(shí),驅(qū)動(dòng)機(jī)通過(guò)泵軸帶動(dòng)葉輪旋轉(zhuǎn),葉輪中的葉片驅(qū)使液體起旋轉(zhuǎn),因而產(chǎn)生離心力。在離心力作用下,液體沿葉片流道被甩向葉輪出口,并流經(jīng)蝸殼送排出管。
    在液體被甩向葉輪出口的同時(shí),葉輪口中心處形成了低壓區(qū),與吸液罐之間就產(chǎn)生了壓差,在這個(gè)壓差作用下,吸液罐中的液體便不斷地經(jīng)吸管路和泵的吸室進(jìn)葉輪中。這樣,葉輪在旋轉(zhuǎn)過(guò)程中,一面不斷地吸人液體,面又不斷地給吸的液體以一定的能頭,將液體排出。離心泵便如此連續(xù)不斷地工作。

(1-2)是指液體經(jīng)所獲得的能量。式(1-5) 中計(jì)揚(yáng)H時(shí)只路的數(shù),該式所計(jì)算的揚(yáng)程為管路實(shí)際需要的揚(yáng)程,而非泵本身提供給液體的揚(yáng)程。泵能提供的揚(yáng)程應(yīng)本身的數(shù)有關(guān),而與管路無(wú)關(guān)。對(duì)于一個(gè)給定的泵,來(lái)其能提供的揚(yáng)具體與什么參數(shù)有關(guān),它們之間的關(guān)系是什么?這就是離心泵的基本方程一歐拉方程所要解決的問(wèn)題。渣漿泵
    歐拉方程研究葉輪與流體之間能量的傳遞過(guò)程.確定液體從泵中獲得多少能頭。液體在葉輪中獲得能頭,首先表現(xiàn)為液體流速大小和方向的改變因此應(yīng)先分析液體在葉輪中的流動(dòng)規(guī)律。

Working principle of slurry pump core pump

Fig. 1-5 is the general device diagram of centrifugal pump.

Because the centrifugal pump itself can not exclude gas, before the centrifugal pump starts, the pump should be filled with liquid, this process is called pump filling. When starting the pump, the driver drives the impeller to rotate through the pump shaft, and the blades in the impeller drive the liquid to rotate together, thus generating centrifugal force. Under the action of centrifugal force, the liquid is thrown to the impeller outlet along the blade passage, and flows through the volute to the discharge pipe.

When the liquid is thrown to the impeller outlet, a low-pressure area is formed at the center of the impeller inlet, and a pressure difference is generated between the suction tank and the suction tank. Under the effect of this pressure difference, the liquid in the suction tank continuously enters the impeller through the suction pipe and the suction chamber of the pump. In this way, when the impeller is rotating, it constantly sucks the liquid, and at the same time, it continuously gives a certain energy head to the liquid and discharges the liquid. The centrifugal pump works continuously.

Equation (1-2) refers to the energy obtained by the liquid through the pump. In formula (1-5), only the parameters of the pipeline are needed when calculating the head h, which is the actual head required by the pipeline, rather than the head provided by the pump itself to the liquid. The head provided by the pump should be related to the parameters of the pump itself, but not to the pipeline. For a given pump, what is the relationship between the specific lift it can provide and what parameters? This is the problem to be solved by Euler equation, the basic equation of centrifugal pump. Slurry pump

Euler equation studies the energy transfer process between impeller and fluid, and determines how much energy head liquid gets from pump. The liquid obtains energy head in impeller, which firstly shows the change of liquid velocity and direction. Therefore, the flow rule of liquid in impeller should be analyzed first.