NTU method

NTU method

The Number of Transfer Units (NTU) Method is used to calculate the rate of heat transfer in heat exchangers (especially counter current exchangers) when there is insufficient information to calculate the Log-Mean Temperature Difference (LMTD). In heat exchanger analysis, if the fluid inlet and outlet temperatures are specified or can be determined by simple energy balance, the LMTD method can be used; but when these temperatures are not available The NTU or The Effectiveness method is used.

To define the effectiveness of a heat exchanger we need to find the maximum possible heat transfer that can be hypothetically achieved in a counter-flow heat exchanger of infinite length. Therefore one fluid will experience the maximum possible temperature difference, which is the difference of  \ T_{h,i}- \ T_{c,i} (The temperature difference between the inlet temperature of the hot stream and the inlet temperature of the cold stream). The method proceeds by calculating the heat capacity rates (i.e. mass flow rate multiplied by specific heat)  \ C_h and  \ C_c for the hot and cold fluids respectively, and denoting the smaller one as  \ C_{min}. The reason for selecting smaller heat capacity rate is to include maximum feasible heat transfer among the working fluids during calculation.

A quantity

q_{max}\ = C_{min} (T_{h,i}-T_{c,i})


is then found,where  \ q_{max} is the maximum heat that could be transferred between the fluids. According to the above equation, to experience the maximum heat transfer the heat capacity should be minimized since we are using the maximum possible temperature difference. This justifies the use of  \ C_{min} in the equation.

The effectiveness(E), is the ratio between the actual heat transfer rate and the maximum possible heat transfer rate:

E \ = \frac{q}{q_{max}}

where

q \ = C_h (T_{h,i} -T_{h,o})\ = C_c (T_{c,o} - T_{c,i})

Effectiveness is dimensionless quantity between 0 and 1. If we know E for a particular heat exchanger, and we know the inlet conditions of the two flow streams we can calculate the amount of heat being transferred between the fluids by

q \ = E C_{min} (T_{h,i} -T_{c,i})

For any heat exchanger it can be shown that

  \ E = f  ( NTU,\frac{C_{min}}  {C_{max}})

For a given geometry,  \ E can be calculated using correlations in terms of the 'heat capacity ratio'

C_r \ = \frac{C_{min}}{C_{max}}

and the number of transfer units,  \ NTU

NTU \ = \frac{U A}{C_{min}}


where  \ U is the overall heat transfer coefficient and  \ A is the heat transfer area.

For example, the effectiveness of a parallel flow heat exchanger is calculated with

 E \ = \frac {1 - exp[-NTU(1 + C_{r})]}{1 + C_{r}}

Or the effectiveness of a counter-current flow heat exchanger is calculated with

 E \ = \frac {1 - exp[-NTU(1 - C_{r})]}{1 - C_{r}exp[-NTU(1 - C_{r})]}

Similar effectiveness relationships can be derived for concentric tube heat exchangers and shell and tube heat exchangers. These relationships are differentiated from one another depending on the type of the flow (counter-current, concurrent, or cross flow), the number of passes (in shell and tube exchangers) and whether a flow stream is mixed or unmixed.

Note that the  C_r \ =  0 is a special case in which phase change condensation or evaporation is occurring in the heat exchanger. Hence in this special case the heat exchanger behavior is independent of the flow arrangement. Therefore the effectiveness is given by

 E \ = 1 - exp[-NTU]

References

1. F. P. Incropera & D. P. DeWitt 1990 Fundamentals of Heat and Mass Transfer, 3rd edition, pp. 658–660. Wiley, New York

2. F. P. Incropera , D. P. DeWitt , T. L. Bergman & A. S. Lavine 2006 Fundamentals of Heat and Mass Transfer ,6 th edition , pp 686–688. John Wiley & Sons US


Wikimedia Foundation. 2010.

Игры ⚽ Поможем написать реферат

Look at other dictionaries:

  • NTU — may stand for: National Taxpayers Union, a nonprofit organization in the United States National Team Unity, a political party in Trinidad and Tobago National Television Company of Ukraine, a Ukrainian television broadcaster Nephelometric… …   Wikipedia

  • Boundary element method — The boundary element method is a numerical computational method of solving linear partial differential equations which have been formulated as integral equations (i.e. in boundary integral form). It can be applied in many areas of engineering and …   Wikipedia

  • Power series method — In mathematics, the power series method is used to seek a power series solution to certain differential equations. Method Consider the second order linear differential equation: a 2(z)f (z)+a 1(z)f (z)+a 0(z)f(z)=0;!Suppose a 2 is nonzero for all …   Wikipedia

  • Concentric tube heat exchanger — Concentric Tube (or Pipe) Heat Exchangers are used in a variety of industries for purposes such as material processing, food preparation and air conditioning.[1] They create a temperature driving force by passing fluid streams of different… …   Wikipedia

  • Heat transfer — is a discipline of thermal engineering that concerns the exchange of thermal energy from one physical system to another. Heat transfer is classified into various mechanisms, such as heat conduction, convection, thermal radiation, and phase change …   Wikipedia

  • Heat exchanger — An interchangeable plate heat exchanger Tubular heat exchan …   Wikipedia

  • Effectiveness — is the capability of producing a desired effect (i.e. result). When something is deemed effective (adjective), it means it has an intended or expected outcome, or produces a deep, vivid impression.[1] “The effectiveness of the advertisement was… …   Wikipedia

  • Shell and tube heat exchanger — A shell and tube heat exchanger is a class of heat exchanger designs. [ cite book|author=Sadik Kakaç and Hongtan Liu|title=Heat Exchangers: Selection, Rating and Thermal Design|edition=2nd Edition|publisher=CRC Press|year=2002|id=ISBN 0849309026] …   Wikipedia

  • Log mean temperature difference — The log mean temperature difference (LMTD) is used to determine the temperature driving force for heat transfer in flow systems (most notably in heat exchangers). The LMTD is a logarithmic average of the temperature difference between the hot and …   Wikipedia

  • Turbidity — standards of 5, 50, and 500 NTU Turbidity is the cloudiness or haziness of a fluid caused by individual particles (suspended solids) that are generally invisible to the naked eye, similar to smoke in air. The measurement of turbidity is a key… …   Wikipedia

Share the article and excerpts

Direct link
Do a right-click on the link above
and select “Copy Link”