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Elaborated method for calculating U values

A general expression for U can be easily obtained as follows. Consider a double pipe heat exchanger in which one fluid through the inner pipe and the other fluid through the annular space between space between the two pipes. Let       L          = length of heat exchanger, m ri          = inside […]
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Overall heat transfer coefficient

An important parameter in the design and monitoring of heat exchangers is the overall heat transfer coefficient, U, between the two fluids. A value for U can be easily obtained by knowing the followings: Mass flow of the fluid, Specific heat of the fluid, Difference in temperature of the fluid […]
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Effect of scale formation

In most heat exchangers some scale formation will take place on both sides of the heat transfer surface after the heat exchanger has been in use for some time (unless scale inhibition mechanism is in place). This introduces two additional resistances in the heat flow path. Thus the total thermal […]
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Condensation of Steam

Steam is frequently used as heating medium. The mean temperature difference is given here:  A pure, saturated, vapour will condense at a fixed temperature, at constant pressure. For an isothermal process such as this, the simple LMTD can be used in equation 1.3; no correction factor for multiple passes is […]
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Condenser, where the hot fluid temperature varies

In some type of heat exchanger, the temperature of both the fluids is varying and there fore logarithmic mean temperature will have to be calculated. The temperature changes of water and hot fluid may be represented graphically by the following figure. During the process the hot fluid will reject heat […]
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Significance of pressure

The cold and hot fluid inlet and outlet temperature and ΔP of the fluids across the heat exchangers are very significant in determination of the health of that heat exchanger. In condensers ΔP is shown as vacuum. Any increase in ΔP or decrease in vacuum is an indication of fouling […]
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Significance of flow-rates

Flow-rates and any change in flow-rates have different effects on Q and U values. Following are the effects: Changes Effects If hot fluid flow rate is increased     The ΔP of hot fluid across the heat exchanger will increase. The inlet P of hot fluid will increase The ΔT of hot […]
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Methods of checking steam condenser performance

It is desirable to get a rated load or some agreed-upon load on the turbine which will be the same for each successive check and read the load, air leakage, inlet water temperature, outlet water temperature and the absolute pressure in the condenser, and convert the absolute pressure into the […]
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Common conversion factors

1 ft = 0.3048 m = 30.48 cm 1 in = 2.54 cm = 0.0254 m 1 m = 3.2808 ft = 39.37 in = 1.0936 yd 1 km = 0.62137 mile 1 mm = 1000 microns 1 micron = 1/100000 m = 1/10000 cm 1 kg = 2.205 lb […]
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Scotch Boilers

Scotch boilers (often referred to as scotch marine boilers) derive their name from the Scottish shipyards that built boilers for marine vessels for the British Navy. Old brick set boilers used to burn through the bottom of the ships. The “Scotch Marine” design featured a cylindrical vessel enclosing a totally […]
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    ALBATROSS FINE CHEM PRIVATE LIMITED
    (AN ISO 9001:2015 and ISO 14001:2015 CERTIFIED COMPANY)
    CIN No. U74899DL1995PTC067165
    40 D.L.F. INDUSTRIAL AREA, ALISHAN BUILDING, 3rd FLOOR,
    KIRTI NAGAR, NEW DELHI–110015 (INDIA)

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    • Cooling water treatment additives
    • Boiler water treatment additives
    • Descalant / passivators
    • Pikling inhibitor / Foaming compound
    • Acid inhibitors – Indl. cleaning
    • R.O. Water additive
    • Potable water additive
    • Fuel additive