4. Heat Exchangers free study note for Diploma

4.1 Based on Contact Between Fluids

a) Direct Contact Heat Exchanger

Advantages:

Disadvantages:

b) Indirect Contact Heat Exchanger

4.2 Based on Flow Arrangement

a) Parallel Flow Heat Exchanger

  • Both fluids flow in the same direction
  • Temperature difference is maximum at inlet and decreases along the length

Characteristics:

  • Simple design
  • Lower effectiveness compared to counter flow

b) Counter Flow Heat Exchanger

  • Fluids flow in opposite directions
  • Maintains a more uniform temperature difference

Advantages:

  • Higher heat transfer efficiency
  • Better temperature control

c) Cross Flow Heat Exchanger

  • Fluids flow perpendicular to each other
  • Used when one fluid is gas and the other is liquid

Example:

  • Car radiators
  • Air coolers

4.3 Based on Construction

a) Shell and Tube Heat Exchanger

  • One fluid flows through tubes, other flows through shell
  • Most widely used in industries

Advantages:

  • Suitable for high pressure and temperature
  • Easy maintenance

b) Plate Heat Exchanger

  • Consists of corrugated metal plates
  • Large heat transfer area in compact size

Advantages:

  • High efficiency
  • Easy to clean

c) Finned Tube Heat Exchanger

  • Fins increase surface area
  • Used when one fluid has a low heat transfer coefficient (air)
  • Tubes
  • Shell
  • Baffles
  • Tube sheets
  • Inlet and outlet nozzles

The amount of heat transferred is given by:Q=mcp(Tinโˆ’Tout)Q = m c_p (T_{in} – T_{out})

Where:

  • QQ = heat transfer rate (W)
  • mm = mass flow rate (kg/s)
  • cpc_pโ€‹ = specific heat (J/kgยทK)
  • TT = temperature (K)

Since temperature difference varies along the length, the log mean temperature difference is used:ฮ”Tlm=ฮ”T1โˆ’ฮ”T2lnโก(ฮ”T1ฮ”T2)\Delta T_{lm} = \frac{\Delta T_1 – \Delta T_2}{\ln\left(\frac{\Delta T_1}{\Delta T_2}\right)}

Where:

  • ฮ”T1\Delta T_1 = temperature difference at one end
  • ฮ”T2\Delta T_2โ€‹ = temperature difference at the other end

Q=UAฮ”TlmQ = U A \Delta T_{lm}

Where:

  • UU = overall heat transfer coefficient (W/mยฒยทK)
  • AA = heat transfer area (mยฒ)

Effectiveness (ฮต) is defined as:ฮต=Actual heat transferMaximum possible heat transfer\varepsilon = \frac{\text{Actual heat transfer}}{\text{Maximum possible heat transfer}}

It indicates how efficiently the heat exchanger performs.

Fouling is the deposition of unwanted materials on heat transfer surfaces.

Effects:

Prevention:


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