Product Thermal Capacity: 1 - 20 t/h
Working Pressure: 0.7 - 2 Mpa
Available Fuel: Nature gas, coke oven gas, biogas, methanol, liquid propane gas, diesel, heavy oil, light oil, crude oil, etc.
Available Industries: Heat supplying, chemical, food, textile, printing and dyeing, cigarettes and tobacco, fodder, pharmacy, building materials, brewery, rubber, hospital etc.
WNS series horizontal internal combustion boiler is a boiler shell type 3 passes wetback oil/gas fired boiler. After fuel is being atomized by burner, flame is full of the wave furnace and transfer heat via furnace wall, this is 1st pass; the high temperature smoke is collected in reversal chamber and then enters 2nd pass which is grooved tubes bundle area; after heat convection, air temperature gradually falls and goes to front smoke box and turn to 3rd pass, which is smooth tubes bundle area, and then enters chimney passing back smoke box and exhausted to the atmosphere.
1. Digitized manufacture
The key part such as material cutting, rolling, drilling are proceeded by advanced CNC machining process to reduce the assemble stress and extend boiler working lifetime.
The front and back smoke chamber plates are cut by CNC plasma cutting machine and looks tidy and beautiful.
2.Easy operation and maintenance
Fully automatically operating, with automatically adjustment and protection of burning, water level, temperature and steam pressure.
3. Longer working life
Smoke tube and tube sheet connection is expanded first to eliminate the gap between them, then adopt automatic argon arc welding to relief the stress and expand boilers working life.
Longitudinal and girth joint adopt advanced automatic submerged-arc welding for good welding quality. All longitudinal and girth joint will have 100% radiographic inspection.
Fin tube us ND steel or stainless-steel material which avoid low temperature corrosion.
Inspection procedure point is set up to guarantee the sequence of expanding and welding, avoid cracking of the tube sheet holes.
4. Less fuel consumption
High quality aluminum silicate fiber is used with fire clay insulation, to control the boiler body temperature below 45℃ to control heat lost.
Sufficient steam storage room and heating area makes boiler to generate high quality steam and high thermal power.
Condenser is added to reuse the waste heat of the exhausted smoke to increase feeding water’s temperature and reduce emission temperature, which can increase the thermal efficiency above 98% and save operating cost.
D type gas fired water tube boiler 17.5MW for heating. Types of water tube boilers. There are many boilers belonging to water tube type boiler. We offer this kind of boilers, such as packaged gas oil watertube boiler, bi-drum chain grate boiler, fuel flexible coal and biomass circulating fluidized bed boiler, and waste heat recovery boiler.
Oct 16, 2016· Waste heat recovery 1. Waste Heat Recovery: Fundamentals Prof. Debajyoti Bose UPES 2. Introduction • A valuable alternative approach to improving overall energy efficiency is to capture and reuse the lost or "waste heat" that is intrinsic to all industrial manufacturing • Captured and reused waste heat is an emission free substitute for costly purchased fuels or electricity • In some
heat boiler, a waste heat recovery system was produced that can re- cover sensible heat from hot air emitted by the cooling process of sinter coolers located downstream of sinter machines.
Advantages And Disadvantages Of Waste Heat Recovery Boilers 2016-05-13 Waste heat recovery boilers are widely used in large scale industries to recover waste heat in process and then heat water to produce hot water or high temperature high pressure steam to generate power, which can save large quantity of energy and cost for industries.
Jan 10, 2010· Waste Heat Boiler Design - posted in Student: Hi all I am a student of 3rd year of Chemical Engineering. I have been asked to design a waste heat boiler present in a previous process design. The process was HCN by BMA process (Degussa). Well the waste heat boiler that I need to design is located just after the catalytic reactor, the process gases leave the reactor at a temperature …
By capturing exiting heat, a waste heat recovery system effectively helps minimize long term steam plant energy costs. IB&M has installed a large number of Penn Separator systems, which offer a variety of Continuous Blowdown Heat Recovery Systems designed to …
Location: 78 St Andrews Road, Wirral, CH639JQ What Are the Disadvantages of Heat Recovery Systems? There are some challenges to implementing a heat recovery system. For example, some waste recovery equipment installations may not match the full recovery potential due to the material limits of the heat exchanger or the expense of extending recovery techniques to lower-temperature and higher-temperature systems.
Heat absorbed by water = 0.95 Vs(t 1 − t 2)MJ s −1,. t 1 and t 2 = temperature of hot gases before and after the W.H. boiler, °C.. Total heat as steam = sensible heat in feed water + heat absorbed by water in boiler. In good practice t 2, the temperature at which the flue gases leave the boiler, may be reduced to ca.50 K above the temperature of the water in the boiler.
Feb 14, 2018· When this runs out you will have to wait for the tank to heat back up. Heat Loss – A hot water tank can loose heat, making it inefficient, if it is not insulated correctly. Get In Touch. If you are interested in our system boiler installation service, or have any questions, call us on 0758 0395 493.
RD&D to advance waste heat recovery technologies. Technology needs are identified in two broad areas: 1) extending the range of existing technologies to enhance their economic feasibility and recovery efficiency, and 2) exploring new methods for waste heat recovery, especially for unconventional waste heat sources. Acknowledgement
The efficiency of generating power from waste heat recovery is heavily dependent on the temperature of the waste heat source. In general, economically feasible power generation from waste heat has been limited primarily to medium- to high-temperature waste heat sources (i.e., > 500 oF). Emerging technologies, such as organic
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