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Re: [EnergyPlus_Support] DX Cooling coil single speed





Since you're probably using default settings lookup the CTF (conduction transfer function) method or the heat balance in the engineering reference.

On 7 Jul 2016 12:04 pm, "sandip gupta sandipgupta_nh@xxxxxxxxxxx [EnergyPlus_Support]" <EnergyPlus_Support@xxxxxxxxxxxxxxx> wrote:
 

Dear Sir,
I am using simple algorithm for inside wall and simple combined algorithm for outside wall. and I got the coeficient
also. Now using this coeficient how to calculad surface load. What is u value that you have mentioned earlier.

With Regards,
--------------------------------------------
On Thu, 7/7/16, sandip gupta sandipgupta_nh@xxxxxxxxxxx [EnergyPlus_Support] <EnergyPlus_Support@xxxxxxxxxxxxxxx> wrote:

Subject: Re: [EnergyPlus_Support] DX Cooling coil single speed
To: EnergyPlus_Support@xxxxxxxxxxxxxxx
Date: Thursday, 7 July, 2016, 11:15 AM


 









Dear Sir,

The coefficient that r required I am going to use
from e+ as it is constant for a particular building
construction I guess.

U only tell me the formula that relates the coefficent with
Temperature for surface load.



Regards.

--------------------------------------------

On Thu, 7/7/16, Jean Marais jeannieboef@xxxxxxxxx
[EnergyPlus_Support]
<EnergyPlus_Support@xxxxxxxxxxxxxxx> wrote:



Subject: Re: [EnergyPlus_Support] DX Cooling coil single
speed

To: EnergyPlus_Support@xxxxxxxxxxxxxxx

Date: Thursday, 7 July, 2016, 10:27 AM





 



















Like I said, it depends what

algorithm you have selected for calculating the
convection

coefficients (both the outside and inside).

Search the documents for TARP to find one. How

all the others are called, you will find in a table
listing

them all.

On 6 Jul 2016 18:57,

"sandip gupta sandipgupta_nh@xxxxxxxxxxx

[EnergyPlus_Support]"
<EnergyPlus_Support@xxxxxxxxxxxxxxx>

wrote:































 



















Dear sir,



I feel that I am taped into this subject



Surface Inside Face Convection Heat Transfer Coefficient
is

it the property of the surface or does it changes with

temperature set point change.



I will tell you my main objective



I want to get maximum number of variables from from e+
to

matlab so that my calculation burden is reduced but I
want

to know the relation which will guide me



to find the change in Zone Air Heat Balance Surface

Convection Rate for a given outdoor temperature and set

point temperature.



In every time step i am taking the feedback of the
variables

from e+ to matlab that I csan do easily I know how to do
it.





But tell me how the relation is obtained for every time
step

i will do the calculation.







Regards,







--------------------------------------------



On Wed, 6/7/16, Jean Marais jeannieboef@xxxxxxxxx

[EnergyPlus_Support]
<EnergyPlus_Support@xxxxxxxxxxxxxxx>

wrote:







Subject: Re: [EnergyPlus_Support] DX Cooling coil single

speed



To: EnergyPlus_Support@xxxxxxxxxxxxxxx



Date: Wednesday, 6 July, 2016, 9:35 PM











 







































Convection heat transfer is equal



to the heat transfer across the surface and can be

easily



calculated using the u-value of the surface including

film



resistances in W/(m2*K).



The problem is that the film resistances change



at each time step due to changing convection

coefficients.



Depending on what algorithm you chose to use (TARP,
DOE,



etc.) these are calculated for each surface using

parameters



such as orientation, local air velocity assumptions,

volume



aspect ratios, etc.



Also, the energy transfer can use a conduction



FiniteDifference (condFD) method or CTF (default)
method

to



take capacitive effects into account.



Additionally, other equipment may be defined



that either transfer energy directly to the air node
via



convection or to all the surfaces first which in turn



changes their surface temperatures and heat transfer

across



them.



Again, there are several things going on that



converge on a solution. This is exactly why we use



EnergyPlus. Don't calculate this with Matlab,

instead



feed the results of the heat transfers from e+ to
Matlab

if



you require them.











On 6 Jul 2016 3:27 pm,



"sandip gupta sandipgupta_nh@xxxxxxxxxxx



[EnergyPlus_Support]"
<EnergyPlus_Support@xxxxxxxxxxxxxxx>



wrote:































































 







































Dear sir,















Actually I am desigining a controller in matlab and

through



BCVTB I am sending the set point to E+. Now Most of the



variables I am using from reporting variable. The only



problem I am now facing is with calculation of







 ZSF1:Zone Air Heat Balance Surface Convection Rate

[W]



and  Air Heat Balance Outdoor Air Transfer Rate [W].







Can u help me with the related formulas used to

calculate



the above values. So that I can develop a suitable

logic.



















Regards,







--------------------------------------------







On Wed, 6/7/16, Jim Dirkes
jim@xxxxxxxxxxxxxxxxxxxxxxxxxxx



[EnergyPlus_Support]
<EnergyPlus_Support@xxxxxxxxxxxxxxx>



wrote:















Subject: Re: [EnergyPlus_Support] DX Cooling coil
single



speed







To: "EnergyPlus_Support@xxxxxxxxxxxxxxx"



<EnergyPlus_Support@xxxxxxxxxxxxxxx>







Date: Wednesday, 6 July, 2016, 6:09 PM























 















































































Sandip,Have you







reported Output:Variables such

as:Output:Variable,*,Cooling



Coil







Electric Power,hourly; !- HVAC Average



[W]Output:Variable,*,Cooling Coil Sensible Cooling







Rate,hourly; !- HVAC Average [W]







Another consideration is







to create Meter:Custom for specific







variables.







These may make your







evaluation simpler than using manual







calculations. 







On Tue, Jul 5, 2016 at 4:32







PM, sandip gupta sandipgupta_nh@xxxxxxxxxxx







[EnergyPlus_Support]
<EnergyPlus_Support@xxxxxxxxxxxxxxx>







wrote:















































































 















































































Dear Sir,































Thank you for your kind reply.















My main aim is to find the relation between Power







consumption by HVAC system for a given desired room







temperature and outdoor room temperature.I have
already



used







the performance curve to get the power consumption

using



















Q.total=Q.total.rated*EIR*RTF































Where RTF=PLR/PLF















and PLR=actual sensible cooling load /steady state



sensible







cooling rate































What is the formula to calculate actual sensible

cooling







load and steady state sensible cooling rate where can
I



find







this values is reporting XLS sheet.















How actual sensible cooling load and steady state



sensible







cooling rate are related to Desired Set Point



Temperature







and and Outdoor temperature.































With Regards,















Sandip Gupta















































--------------------------------------------















On Wed, 6/7/16, Jean Marais jeannieboef@xxxxxxxxx







[EnergyPlus_Support]
<EnergyPlus_Support@xxxxxxxxxxxxxxx>







wrote:































Subject: Re: [EnergyPlus_Support] DX Cooling coil

single







speed















To: EnergyPlus_Support@xxxxxxxxxxxxxxx















Date: Wednesday, 6 July, 2016, 1:06 AM































 































































































































































Dear Sandip,















DX equipment models mostly use a set of 4















curves that are generated using regression analysis



from







a















matrix of performance data provided by the



manufacturer.















This matrix describes how the equipment performs
under



a















wide variety of different operating conditions. The







curves















are each in their own right normalized around a set
of















"rating point" values.















There are two tools available that I have seen















to help you setup (and possibly understand better)
the















performance curves in conjunction with appropriate







rating















point values (they go hand in hand). One is a







spreadsheet















tool that comes with e+ and can usually be found in



your























launch bar. The other is from DesignBuilder. I use my







own,















but only I understand how it works.















Be forewarned that this topic is probably the















most advanced that the non-source-code writing







simulation















community can come up against. If you are a beginner

e+















user, my advice would be NOT to start with the most







complex















issues first. If you have gained a basic
understanding







about















part-load (part of "rated full load")







performance















together with the other factors influencing HVAC







performance















(like the humidity in the air and the temperatures of







both















air and cooling medium, as well as bypass factor)
that















should be enough for now.















The equation you wrote is one of several that















are solved simultaneously using algorithms that



converge







on















a solution. I'm sorry there is no easy answer.
The















interdependencies are simply too complex to solve by















hand.















Perhaps you state what you wish your model















should demonstrate. Then state what you have done and







what















you observed, followed by what you cannot interperate



or















generate for results.















Kindly yours,















On 5 Jul 2016 2:15 pm,















"sandip gupta sandipgupta_nh@xxxxxxxxxxx















[EnergyPlus_Support]"
<EnergyPlus_Support@xxxxxxxxxxxxxxx>















wrote:















































































































































































































































 































































































































































Dear sir,'































While calculating the power consumption

of



a







DX















Cooling Coil Single Speed.































Step 1: Total Cooling Capacity as a function of







temperature















is calculated. Here from where does the Wet Bulb







temperature















comes from is it the sensor value.















































Step 2: Total Cooling Capacity as a function of flow















fraction is calculated.































Step 3: Qtotal = Qtotal,rated * (TotCapTempModFac) *















(TotCapFFModFac) is calculated but from where do we

get















Qtotal,rated. Pls help.































































EnergyPlus? Version 8.5 Documentation Engineering















Reference Page Number 785 calculations.































































Please help me out how to calculate the power



consumption







of















HVAC system for different set point temperature. Does







the















above calculations satisfy my requirements.































































I would be very very thankful to you if you kindly



solve







my















doubts and problems.































































With Warm Regards,































Sandip Gupta.































































































































































































































































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#yiv5070462655







































































































































































































--







James V Dirkes II, PE,







BEMP, LEED AP







CEO/President







The Building Performance Team Inc.







1631 Acacia Dr, GR, Mi 49504















Direct: 616.450.8653







jim@xxxxxxxxxxxxxxxxxxxxxxxxxxx















Website l  LinkedIn |







May















2016 ASHRAE Journal article on energy modeling







































































































































Either I win ? or I learn.







































































































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...


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Posted by: Jean Marais <jeannieboef@xxxxxxxxx>


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