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渣漿泵脫硫泵擋板的動作時間
添加時間:2019.11.04

渣漿泵脫硫泵擋板的動作時間
  隔離擋板從全開到全關,或者從全關到全開所需要的時間叫做動作時間。通常,用作旁路煙道的百葉窗擋板要求快開時間不超過25s,對快速動作的要求主要是保證當FGD故障緊急停運時,能快速開啟旁路擋板門,以確保煙氣經旁路煙道直接進入煙囪。百葉窗旁路擋板門關閉時的開度應具有分級可調性,以減少旁路門關閉時對鍋滬爐膛負壓的影響。FGD系統的其他百葉窗擋板門的動作時間一般在40s左右。
  閘板門打開和關閉時的運行速度一般為1.3~ 2m/min。大型機組口煙道的高度多在3m以上,門完全打開或者關閉需要2~3min。因此,它不能應用在旁路煙道中,主要用在系統口或吸收塔入口,僅作隔離之用。
  4.煙道沉積物對擋板門動作的影響
  煙道沉積物飛灰、吸收塔漿液中的固體物會積聚在煙道內,尤其是煙道的底部。因此必須考慮這些沉積物對擋板門動作的影響。
  對于通常的閘板式開關門,如系統或吸收塔口、出口隔離擋板門,其板片必須能擠掉這些沉積物插煙道。擋板驅動裝置,如電動機應有足夠的功率能使閘板插沉積物中。對于一個長期處于關閉狀態的閘板門,驅動裝置的執行器必須有足夠的啟動功率以克服板片和框之間的粘連。
  對于一個常開的百葉窗擋板門,如FGD、出口門,或常閉的百葉窗擋板門,如旁路隔擋板門,如果長期處于某一位置,煙道沉積物可能會使葉片難以動作。對于底部的葉片,這一問題尤為嚴重。其一,煙道底部是沉積物最多的區域;其二,如果其他葉片轉動靈活,驅動器的整個扭矩都作用在底部葉片上,這可能損壞葉片和連接機構。因此,些百葉窗擋板配有兩套驅動器和連接機構。套供最下面的葉片使用,另套供其他葉片使用。

另外,對于常閉的百葉窗擋板門,如果煙道積灰出現在擋板門的側,葉片旋轉方向應朝積灰的下游側,避免積灰阻擋葉片轉動。
    不論何種擋板門,最好的操作方式是定期將擋板廣在其活動范圍內動一動,以防擋板門長期不動作發生卡澀。對于常團的旁路擋板門尤其應該如此。
  煙道擋板的技術要求如下:(1)耐高溫特性;(2)耐化學腐蝕性能(酸腐蝕);(3)過壓:(4)負壓; 渣漿泵

Action time of baffle plate of desulfurization pump of slurry pump


The time required for the isolation baffle from full opening to full closing, or from full closing to full opening is called action time. Generally, the fast opening time of the shutter damper used as the bypass flue is required to be no more than 25s, and the fast action is mainly required to ensure that the bypass damper door can be opened quickly when the FGD fails to shut down in an emergency, so as to ensure that the flue gas directly enters the chimney through the bypass flue. The opening of the louver bypass damper shall be adjustable in stages to reduce the negative pressure of the boiler furnace when the bypass valve is closed. The action time of other shutter door in FGD system is generally about 40s.


The operating speed of ram door when it is opened and closed is generally 1.3 ~ 2m / min. The height of the flue at the inlet of large units is more than 3m, and it takes 2-3min for the door to be fully opened or closed. Therefore, it can not be used in the bypass flue, mainly used in the system inlet or absorption tower inlet, only for isolation.


4. Effect of flue deposit on damper door action


The solid matter in the fly ash of flue deposit and slurry of absorption tower will accumulate in the flue, especially at the bottom of the flue. Therefore, it is necessary to consider the effect of these deposits on the operation of the damper door.


For the normal gate type door opening and closing, such as the inlet and outlet isolation damper doors of the system or absorption tower, the plates must be able to squeeze out these deposits and insert them into the flue. The damper driving device, such as the motor, shall have enough power to insert the ram into the deposit. For a long-term closed gate, the actuator of the driving device must have enough starting power to overcome the adhesion between the plate and the door frame.


For a normally open shutter door, such as FGD inlet and outlet door, or normally closed shutter door, such as bypass isolation damper door, if it is in a certain position for a long time, the flue deposit may make the blade difficult to operate. For the bottom blade, this problem is particularly serious. First, the bottom of the flue is the area with the most sediment; second, if other blades rotate flexibly, the whole torque of the driver acts on the bottom blades, which may damage the blades and the connecting mechanism. Therefore, some louver baffles are equipped with two sets of drivers and connecting mechanisms. One set is for the lowest blade and the other for other blades.




In addition, for the normally closed shutter baffle door, if the ash accumulation in the flue appears on one side of the baffle door, the rotation direction of the blade shall be toward the downstream side of the ash accumulation to avoid the ash accumulation blocking the rotation of the blade.


No matter what kind of baffle door, the best way of operation is to move the baffle widely in its range of activity regularly, so as to prevent the baffle door from jamming if it does not move for a long time. This is especially true for the bypass damper of the constant mass.


The technical requirements of flue damper are as follows: (1) high temperature resistance; (2) chemical corrosion resistance (acid corrosion); (3) overpressure; (4) negative pressure;


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