蒸汽冷凝器|类型,功能,图,优点

蒸汽冷凝器|类型,功能,图,优点

介绍

蒸汽冷凝器是其中来自蒸汽涡轮机的排气蒸汽通过冷却水冷凝的装置。通过使用循环冷却水从排气蒸汽中除去热量可以进行冷凝。在冷凝期间,工作物质(蒸汽)将其相从蒸汽改变为液体并如图1所示的潜热。

The primary object of a condenser is to maintain a low pressure on the exhaust side of the rotor of steam turbine. This enables the steam to expand to a greater extent which results in an increase in available energy for conversation into mechanical work. The secondary object of condenser is to supply to the boiler pure and hot feed water, as the condensed steam which is discharged from the condenser and collect in a hot well can be used over again as feed water for the boiler. The use of a condenser in a power plant is to improve the efficiency of the power plant by decreasing the exhaust pressure of the steam below atmospheric pressure. Another advantage of the condenser is that the steam condensed may be recovered to provide a source of pure feed water to the boiler and reduce the water softening capacity to a considerable extent.

Advantages of a condenser in a steam power plant

在蒸汽发电厂中掺入蒸汽冷凝器的主要优点如下:
•由于焓滴增加,它增加了电厂的效率。
• It reduces back pressure of the steam which results in more work output.
• It reduces temperature of the exhaust steam which also results in more work output.
•冷凝的蒸汽可作为锅炉的进料水重复使用,这降低了发电成本。
• The temperature of the condensate is higher than that of the fresh water which reduces the heat supplied per Kg of steam produced.

Function of condenser

The main function of condenser is to convert gaseous form of exhaust steam into liquid form at a pressure of below atmosphere. Cooling medium is used water to convert steam into water.

Others important functions of condensers:

• Function of the condenser is to create a vacuum by condensing steam
• Remove dissolved non – condensable gases from the condensate.
• Providing a leak tight barrier between the high grade condensate contained within the shell and the untreated cooling water.
• Providing leak tight barrier against air ingress, preventing excess back pressure on the turbine.

Elements of a steam condensing plant

The main elements of a steam condensing plants are:
•冷凝器,排气蒸汽凝结
•苏pply of cooling water for condensing exhaust steam
• A pump to circulate the cooling water in case of a surface condenser
• A pump called the wet air pump to remove the condensed steam (condensate) the air, and uncondensed water vapour and gases from the condenser (separate pump may be used to remove air and condensed steam)
• A hot well where the condensed steam can be discharged and from which the boiler feed water is taken
•当使用表面冷凝器时,用于冷却循环水的布置(冷却池或冷却塔),有限供应水

Types of condensers

The steam condensers are classified as follows:

1. Jet condensers (mixing type condensers)
a. Parallel flow jet condenser
湾Counter flow jet condenser (low level)
c. Barometric or high level jet condenser
d. Ejector condenser

2. Surface condensers (non mixing type condensers)
a. Down flow surface condenser
湾中央流动表面冷凝器
c. Regenerative surface condenser
d. Evaporative condenser

steam condenser
steam condenser

平行流喷射式冷凝器

In parallel flow jet condenser both the steam and the water enters from the top and flows in the same direction as shown in Figure 1. The exhaust steam is condensed when it mixes up with water. The condensate and the cooling water are delivered to the hot well from where surplus water flows to the cooling pond through an overflow pipe. Sometimes a single pump know as wet air pump is used to remove both air and the condensate but generally separate air pump is used to remove air as it gives a great vacuum.

Counter flow or low level jet condenser

In counter flow or low level jet condenser, the exhaust steam enters from bottom and mixes with the down coming cooling water as shown in Figure 2. The air pump mounted at the top of the condenser shell creates vacuum as it suck air. This draws the supply of cooling water which falls from a large number of jets through perforated conical plate.
The water then falls in the trays and flows through second series of jets and mixes with the exhaust steam entering at the bottom. This cause rapid condensation after which the condensate and the cooling water are delivered to the hot well by the condensate extraction pump.

parallel flow jet condenser and counter flow jet condenser
parallel flow jet condenser and counter flow jet condenser

Barometric or high level jet condenser

This type of condenser is provided at a high level as shown in Figure 3 having a long tail pipe. The exhaust steam enters from the bottom and flows upwards. This steam then mixes with cooling water which falls from the top through various baffles. The vacuum is created by the airpump placed at the top of the condenser shell. The condensate and the cooling water flows downwards through a vertical tail pipe to the hot well without the aid of any pump. The surplus water from the hot well flows to the cooling pond through an overflow pipe.

barometric or high level jet condenser
barometric or high level jet condenser

Ejector condenser

In ejector condenser, the steam and water mix-up while passing through a series of metal cones as shown in Figure 4. Water enters from the top through a number of guide cones. The exhaust steam enters the condenser through a non return valve. The steam and air then pass through the hollow truncated cones. After that it passes through the diverging cone where its kinetic energy is partly transformed into pressure energy. The condensate and the cooling water are then discharged to the hot well. The high exit pressure in the diverging cone allow discharged of water automatically into the hot well at atmospheric pressure

ejector condenser
ejector condenser

Surface condenser

In surface condenser, the condensate does not mix up with the cooling water. So the whole condensate can be reused in the boiler. This type of condenser is used where is only limited quantity of fresh water is available like ships. A sectional view of a two pass surface condenser isshown in Figure 5. It consists of a horizontal cylindrical vessel made of cast iron packed with tubes for cooling water. The cooling water flows in one direction through the lower half of the tubes and in opposite direction through the upper half. The water tubes are fixed into vertical perforated type plates at the ends so that leakage of water should not occur into the central condensing space. The steam enters from top end. The extraction pump at the bottom sucks the condensate resulting in the downwards flow of steam over the water tubes.

Down flow surface condenser

在下流动表面冷凝器中,蒸汽从顶部进入如图6所示。由于在底部的提取泵的抽吸,排气蒸汽被迫在水管上向下流动。干燥空气泵的吸入管设置在底部附近,并被挡板覆盖,使得冷凝的蒸汽不会进入其中。作为垂直于冷却水流方向的蒸汽流动,它也称为交叉流动表面冷凝器。

中央流动表面冷凝器

在这种类型的表面冷凝器中,空气提取泵的吸入管放置在管巢的中心,如图7所示。来自涡轮机的排气蒸汽从顶部进入并在管上径向向内流动。冷凝物在底部收集。中央流动型表面冷凝器在下流型上的优点是当蒸汽流动向内流动时,蒸汽流过水管的整个周边。

central flow surface condenser
central flow surface condenser

Evaporative condenser

In evaporative condenser the steam flows enters the gilled pipes and flows backwards and forwards in a vertical plane as shown in Figure 8. The water pump sprays water on the pipes which condenses the steam. The main advantage of this type of condenser is that the quantity ofcooling water needed to condense the steam can be reduced by causing the circulating water to evaporate which decrease the temperature. The remaining water is collected in the cooling pond.

evaporative condenser
evaporative condenser

Regenerative surface condenser

In this type of condenser the condensate after passing the tube nest is heated using regenerator which is located inside the exhaust steam which raises the temperature of the condensate. This increases the efficiency of the plant as water in the boiler requires less heat input.


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