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ASME Standard Evaporator Assembly Boiler Membrane Wall

Zhangjiagang HuaDong Boiler Co., Ltd.

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ASME Standard Evaporator Assembly Boiler Membrane Wall

Country/Region china
City & Province jiangsu
Categories Refrigeration & Heat Exchange Parts
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Product Details

 

ASME Standard Evaporator Assembly with Boiler Membrane Wall Export To Pakistan
 


Introduction

 

Water wall panels are the main heating surface of boilers, composed of numbers of rows of steel tubes, arranged around the boiler corner. Inside is the flowing water or steam, and the outside accepts the heat of the flame in the furnace of the boiler, mainly absorbing the radiation heat of the high temperature combustion products in the furnace. The working fluid rises in it and evaporates by heat.

 

Serpentine tube is a tube that twists and turns several times in a plane.The convection heating surface of the boiler, such as economizer, superheater and reheater, adopts the structure of serpentine tube through the belt, with horizontal and vertical layout.

 

Evaporative tube bundle is an serpentine tube bundle mainly absorbing convection heat transfer in small and medium capacity boiler. It is generally a bundle of dense staggered tube system composed of ascending and descending tubes connected with upper and lower drum.Evaporation tube bundle pipe heat load is high, this part of the pipe by hot water into steam, from the bottom up;Its main function is to absorb heat to the water and steam and to serve as the rising part of the boiler water cycle.

 

If according to the structure type, there are three main types: bare tube type, membrane type and prick tube type.

 

Membrane water wall is an air-tight structure consisting of pipes and fins.The advantages are less air leakage in furnace; can use pipe-laying wall, less load on steel structure and lower cost of boiler; easy to use suspension structure and improve thermal expansion system, suitable for large-scale mechanized production, high assembly rate, low heat storage capacity and shorten star-up and shutdown time. The disadvantage is that the manufacturing process is complex. Membrane water wall is often used in large capacity, high temperature and high pressure boilers.

 

According to the different manufacturing process, the membrane water wall can be divided into three types(see Fig. 1):1.rolled fin tubes are welded in rows, with less welding workload, but the fin tubes are expensive. 2.bare tube and fin(flat steel) are welded in rows, which has low material cost and can easily meet the requirements of various pitches, but flat steel requires high precision and finishing equipment.3.Bare tube fusion welding,the fins between tubes are formed by filling the welding wire, mostly used for the small pitch between the tubes. The pitch between tubes of membrane water wall is related to factors such as boiler pressure and furnace heat load, usually s/d is 1.2-1.5.

 

Membrane walls are widely used as heating surfaces for power plant boilers and industrial boilers.

Strong points of membrane water wall

(1) Ensure the sealing of furnace wall and reduce air leakage in combustion chamber.

(2)The realization of full water cooling in combustion chamber is beneficial to prevent coking under the condition of intensified combustion.

(3)The cooling time of start-up and shutdown of boilers can be shortened because of its small heat storage capacity, fast temperature rise and fast cooling in combustion chamber.

(4)Pipe-laying furnace wall is suitable, which greatly reduces the load of boiler frame and it is convenient for suspension and lifting.

(5)Compared with the bare tube type, the heat absorption capacity of the tube is improved.

(6)It improves the per-assembly degree of boiler components, facilitates and reduces the installation workload

 

 

 

The drawing here is the evaporator assembly with membrane wall and evaporator coils for your reference.

This project also include steam drum+header+economizer.

 

DESIGN AND FABRICATION CODEASME SECTION I, 2019 EDITION
DESIGN PRESSURE8.1 MPa
MAX. ALLOWABLE WORKING PRESSURE8.1 MPa
DESIGN TEMPERATURE320℃
HYDROSTATIC TEST PRESSURE12.2 MPa
CORROSION ALLOWANCE0.5mm

 

 

 

 

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