1 pound of water at sea level can produce approximately 26.8 cubic feet of steam.
On average, it takes about 0.4 to 0.5 tons of coal to generate 1 ton of steam in a coal-fired power plant. However, this can vary depending on the efficiency of the plant and the quality of the coal being used.
The electricity required to produce 100 kg of steam varies depending on the efficiency of the boiler used and the specific process conditions. On average, it is estimated that it takes about 2,500-3,000 kWh of electricity to produce 1 ton of steam. Therefore, to produce 100 kg of steam, it would require roughly 250-300 kWh of electricity.
The power output of a steam turbine depends on various factors such as turbine size, steam pressure and temperature, and efficiency. Large steam turbines in power plants can generate hundreds of megawatts of electricity, while smaller turbines in industrial settings may produce tens to hundreds of kilowatts.
The amount of heat required to convert 1 kg of steam to water at its boiling point is known as the latent heat of vaporization. For water, this amount is approximately 2260 kJ/kg.
How much steam is required to produce 5 MW power in steam turbine?In fully condensing turbine we will need 20 TPH steam required to generate for 5MW
It would take 1 ton of water to create 1 ton of steam.
It equals one kilpod.
On average, about 1050 cubic feet of natural gas is required to produce 1 ton of steam. This can vary depending on the efficiency of the boiler and the heating value of the natural gas being used.
Each ton of Urea will need 930 cubic meter of natural gas. It will require 230 cubic meter for conversion and nearly 700 cubic meter for input chemical. In MMBTU terms, it will require nearly 27 MMBTU. In calorific value, it will require 7 Giga calories.
1 MMBtu (million British thermal units) is equal to 293.071 watt-hours or 1.05435 gigajoules.
1 kg of natural gas is approximately equal to 0.000001076 MMbtu.
3.5 ton steam
This steam cleaner does not use any electrical power.
Approximately 30,000 gallons of water is required to condense one ton of steam.
1 pound of water at sea level can produce approximately 26.8 cubic feet of steam.
The steam required for steam tracing is calculated on the basis of the amount of heat transfer that is required or the temperature that you want to maintain with the help of steam. It also depends on the pipe material through which the steam is passing,the condition of the steam that whether it is saturated or superheated etc. Overall heat transfer cofficient is calculated considering all the factors like fouling or scaling,inside and outside dia. , surface area etc. After calculating the amount of heat to be transferred, the requirement of rate of steam is calculated. Generally, Low pressure steam is used as it has got more latent/Sensible heat as compared to MP or Superheated steam.