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View Full Version : Design of !6TR Chilling plant.



Maulik Dave
30-05-2012, 07:03 AM
Can any one guide how to design 16 tr chiller plant?

Here is required details.

Condenser : water cooled
ambient temp.: 30-32 degree Celsius
refrigerant : ***** (R22)
Chiller flow rate : 6000 lph
Inlet temp.: is 9-10 degree Celsius and out let temp.: 2 degree Celsius


Please kindly post required procedure.

Thanking you in advance.

Maulik Dave
31-05-2012, 09:15 AM
Any Body out there who can reply would be appreciate..

I am in rush..required soon reply..

Thanking You,

Brian_UK
31-05-2012, 11:03 PM
Being in a rush will not help you design a 16Tr chiller.

You need to attend College to study refrigeration and pumping technologies.

Maulik Dave
01-06-2012, 08:59 AM
Dear Brain_Uk

I appreciate your kind reply..

actually i reached up to 50% in design process..I selected compressor, & evaporator but want to calculate cooling tower calculation & condenser, i have delta T, specific heat for capacity of cooling tower but how can i get to know of mass flow rate to cooling tower so can get TR of cooling tower.

Magoo
02-06-2012, 03:09 AM
Hi
I totally agree with Brian_UK
for a start why are you concidering using R22 when the rest of the world has banned the use of it, additional- your delta split on chiller water side is too high, use 5.5 'C., plus the leaving water temp from chiller is too low at 2 'C and will conflict with anti freeze stat safety, minimum 5.5 'C any lower add anti freeze solution to water

Maulik Dave
09-06-2012, 11:57 AM
Hi Magoo,

actually in kenya still there is no banned on R22 and client have already told for R22 and they have ice cream mixing plant what they want to execute.
All data had been given by client.

D.D.KORANNE
12-06-2012, 10:44 AM
@ Condenser load in kw = evaporator load kw + motor kw rating @pull-down condition

btu/hr
## MAX .Cond water flow in US GPM = -------------------
500 X ( Cond water outlet minus condenser water in temp in deg F )

HOLDING LOAD IN BTU/HR
### MIN . COND WATER FLOW IN US GPM = --------------------------
500 X delta T WATER AS ABOVE