superheated gas steam boiler Condensing Boiler

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  • Minimum order quantity : 1 set :superheated gas steam boiler Condensing Boiler
  • Supply Capacity : 10 units/month :superheated gas steam boiler Condensing Boiler
  • Manufacturer/Brand : Fangkuai boiler
  • Port : Anyang
  • payment terms : Letter of Credit, Wire Transfer, VISA

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θrion Gas Fired Steam Boiler

Capacity:1-20t/h

Rated thermal efficiency: 100-104%

Fixed working pressure: ≤1.6MPa

Applicable fuel:natural gas etc.

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Gas(oil) Fired Integrated Hot Water Boiler

Capacity:0.7-14MW

Rated thermal efficiency:96-98%

Fixed working pressure:≤1.25MPa

Applicable fuel:Natural gas, light oil, etc.

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H6 Gas Fired Hot Water Boiler

Capacity:0.7-2.8Mw

Rated thermal efficiency: 97.2-106%

Fixed working pressure:0.1MPa

Applicable fuel:Natural gas, etc.

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T7 Vacuum Hot Water Boilerr

Capacity:2.8-7.0Mw

Rated thermal efficiency:≥105.5%

Fixed working pressure:-0.02MPa

Applicable fuel:Natural gas, etc.

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V6 Gas Fired Hot Water Boiler

Capacity:99Kw

Rated thermal efficiency:97.2-104.4%

Fixed working pressure:1.0MPa

Applicable fuel:Natural gas, etc.

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Electric Steam Boiler

Capacity:0.5-4.0 t/h

Rated thermal efficiency:98%

Fixed working pressure:≤1.25MPa

Applicable fuel:electric energy

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  • Applied Thermodynamics Pamphlet 2nd edition, 2018 by musadoto

    Jan 27, 2018 · Determine for the cycle (a) the thermal efficiency, (b) the mass flow rate of the steam, in kg/h, (c) the rate of heat transfer, into the working fluid as it passes through the boiler, in MW, (d) the rate of heat transfer, from the condensing steam as it passes through the condenser, in MW, (e) the mass flow rate of the condenser cooling water Get Price

  • Engineering Thermodynamics: Problems and Solutions, Chapter-9

    Kefid [food-550kPa] A large food processing plant requires 3.5 kg/s of saturated or slightly superheated steam at 550 kPa, which is extracted from the turbine of a cogeneration plant. The boiler generates steam at 7 MPa, 540 o C at a rate of 9 kg/s, and the condenser pressure is 14 kPa. Steam leaves the process heater as saturated liquid.Get Price

  • Boiler Products and Solutions - Cleaver-Brooks

    Cleaver-Brooks sets the bar for industry-leading, energy-efficient, low-emissions products for your boiler room. Whether it's a new boiler installation, from the smallest electric commercial boiler to the largest industrial boiler, or retrofitting your current facility, the Cleaver-Brooks fully integrated systems, including boilers, burners, controls, and auxiliary equipment, supply the most Get Price

  • Rankine Cycle - Steam Turbine Cycle | Characteristics

    The increase in the average temperature at which energy is added by heat transfer requires either superheating of steam produced or an increase in the pressure in the boiler (steam generator). Superheating is not typical for nuclear power plants. Typically most nuclear power plants operate multi-stage condensing steam turbines.Get Price

  • Direct and Indirect efficiency in boilers

    Boiler Efficiency = Heat output / Heat Input X 100. Or Boiler Efficiency = Q X (h2 – h1) / (q X GCV) X 100. Where Q = Qty of steam generated. h2 = Enthalpy of steam at output of boiler. h1 = Enthalpy of feed water. Heat Input = q X GCV. q = Fuel Qty. GCV = Gross calorific Value. Below Link can be used to calculate direct boiler efficiency:-Get Price

  • Operation and maintenance schedule of a steam turbine

    The feed-water of the boiler is also fed to the steam drum through a feed pipe extending inside the drum, along the length of the steam drum. A steam drum is used without or in the company of a mud-drum/feed water drum which is located at a lower level. A boiler with both steam drum and mud/water drum is called a bi-drumGet Price

  • Steam Accumulators | Spirax Sarco

    For an average steam boiler, less than 1% of the losses are due to heat radiated from the boiler shell (for example: 1% of the Maximum Continuous Rating (MCR) of the boiler). If a boiler is then producing 50% of its MCR, the losses due to radiation are 2% relative to its production rate.Get Price

  • Engineering Thermodynamics: Problems and Solutions, Chapter-9

    Kefid [food-550kPa] A large food processing plant requires 3.5 kg/s of saturated or slightly superheated steam at 550 kPa, which is extracted from the turbine of a cogeneration plant. The boiler generates steam at 7 MPa, 540 o C at a rate of 9 kg/s, and the condenser pressure is 14 kPa. Steam leaves the process heater as saturated liquid.Get Price

  • Boiler Products and Solutions - Cleaver-Brooks

    Cleaver-Brooks sets the bar for industry-leading, energy-efficient, low-emissions products for your boiler room. Whether it's a new boiler installation, from the smallest electric commercial boiler to the largest industrial boiler, or retrofitting your current facility, the Cleaver-Brooks fully integrated systems, including boilers, burners, controls, and auxiliary equipment, supply the most Get Price

  • Steam Accumulators | Spirax Sarco

    For an average steam boiler, less than 1% of the losses are due to heat radiated from the boiler shell (for example: 1% of the Maximum Continuous Rating (MCR) of the boiler). If a boiler is then producing 50% of its MCR, the losses due to radiation are 2% relative to its production rate.Get Price

  • Compre Special Project (PPE &IPE) | PDF | Boiler | Thermal

    Steam at the rate of 70,000 kg/hr from the boiler drum enters the superheater inlet header at 8.3 Mpa and 485oC. Combustion products at 980oC enters the superheater proper at the rate of 160,000kg/hr. Superheater elements are made of 60 mm O.D. …Get Price

  • Direct and Indirect efficiency in boilers

    Boiler Efficiency = Heat output / Heat Input X 100. Or Boiler Efficiency = Q X (h2 – h1) / (q X GCV) X 100. Where Q = Qty of steam generated. h2 = Enthalpy of steam at output of boiler. h1 = Enthalpy of feed water. Heat Input = q X GCV. q = Fuel Qty. GCV = Gross calorific Value. Below Link can be used to calculate direct boiler efficiency:-Get Price

  • Boiler Efficiency - an overview | ScienceDirect Topics

    C p is the specific heat of superheated steam, kCal/kg o C. There are several measures by which the boiler efficiency of a heating plant can be improved such as the installation of condensing boilers, the periodic tune-up of the boilers, and control operations especially for modular boilers. The net effect of any energy efficiency measure Get Price

  • Boiler - Wikipedia

    Fire-tube boiler Here, water partially fills a boiler barrel with a small volume left above to accommodate the steam (steam space).This is the type of boiler used in nearly all steam locomotives.The heat source is inside a furnace or firebox that has to be kept permanently surrounded by the water in order to maintain the temperature of the heating surface below the …Get Price

  • Steam Power Station: Components, Application, and Working

    The resulting steam is superheated fumes which have high temperature and high pressure. The size of steam production depends on the surface area of heat transferal, flow rate, and the heat of combustion is applied. Boiler system consisting of water-filled pipes is called a water tube boiler.Get Price

  • FLX Watertube Boiler | Cleaver-Brooks

    Steam Applications, Terminology and How to Achieve Best Results → Learn how the industry defines steam from utility, saturated and superheated to filtered and clean. Applications for the various steam types will be covered along with operation best practices. Boiler Room Installation Considerations for Safety, Reliability, and Efficiency →Get Price

  • Steam Rankine Cycle - an overview | ScienceDirect Topics

    Steam Rankine cycle is known as one of the main power-generating cycles, which consists of four key devices, namely a boiler (heat exchanger), a steam turbine, a condenser (heat exchanger), and a pump, as illustrated in Fig. 28.This cycle needs heat input for the boiler either by burning fossil fuels, such as oil, coal, and natural gas, or by obtaining the necessary heat from renewable …Get Price

  • FLX Watertube Boiler | Cleaver-Brooks

    Steam Applications, Terminology and How to Achieve Best Results → Learn how the industry defines steam from utility, saturated and superheated to filtered and clean. Applications for the various steam types will be covered along with operation best practices. Boiler Room Installation Considerations for Safety, Reliability, and Efficiency →Get Price

  • Steam Power Station: Components, Application, and Working

    The resulting steam is superheated fumes which have high temperature and high pressure. The size of steam production depends on the surface area of heat transferal, flow rate, and the heat of combustion is applied. Boiler system consisting of water-filled pipes is called a water tube boiler.Get Price

  • Operation and maintenance schedule of a steam turbine

    The feed-water of the boiler is also fed to the steam drum through a feed pipe extending inside the drum, along the length of the steam drum. A steam drum is used without or in the company of a mud-drum/feed water drum which is located at a lower level. A boiler with both steam drum and mud/water drum is called a bi-drumGet Price

  • Boiler Efficiency - an overview | ScienceDirect Topics

    C p is the specific heat of superheated steam, kCal/kg o C. There are several measures by which the boiler efficiency of a heating plant can be improved such as the installation of condensing boilers, the periodic tune-up of the boilers, and control operations especially for modular boilers. The net effect of any energy efficiency measure Get Price

  • Boiler - Wikipedia

    Fire-tube boiler Here, water partially fills a boiler barrel with a small volume left above to accommodate the steam (steam space).This is the type of boiler used in nearly all steam locomotives.The heat source is inside a furnace or firebox that has to be kept permanently surrounded by the water in order to maintain the temperature of the heating surface below the …Get Price

  • Steam Rankine Cycle - an overview | ScienceDirect Topics

    Steam Rankine cycle is known as one of the main power-generating cycles, which consists of four key devices, namely a boiler (heat exchanger), a steam turbine, a condenser (heat exchanger), and a pump, as illustrated in Fig. 28.This cycle needs heat input for the boiler either by burning fossil fuels, such as oil, coal, and natural gas, or by obtaining the necessary heat from renewable …Get Price

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