Monthly performance report

MISSING IMAGE

Material Information

Title:
Monthly performance report Facilities Development
Uncontrolled:
Facilities Development
Physical Description:
v. : ill. ; 28 cm.
Language:
English
Creator:
United States -- Dept. of Energy
Publisher:
Dept. of Energy
Place of Publication:
Washington
Publication Date:

Subjects

Subjects / Keywords:
Solar energy -- California -- San Diego   ( lcsh )
Solar water heaters   ( lcsh )
Genre:
federal government publication   ( marcgt )
non-fiction   ( marcgt )

Notes

General Note:
National solar data program.
General Note:
Monthly Catalog Number: gp 80010072
General Note:
National solar heating and cooling demonstration program.
General Note:
"SOLAR/1017-79/01" ; "SOLAR/1017-79/02" ; "SOLAR/1017-79/03" ; "SOLAR/1017-79/05" ; "SOLAR/1017-79/06."

Record Information

Source Institution:
University of Florida
Rights Management:
All applicable rights reserved by the source institution and holding location.
Resource Identifier:
aleph - 027069346
oclc - 05908355
System ID:
AA00013865:00002

Full Text
r' -


SOLAR/1017-79/01

Monthly

Performance
Report



FACILITIES DEVELOPMENT
JANUARY 1979


U.S. Department of Energy

National Solar Heating and
Cooling Demonstration Program

National Solar Data Program


I -










































NOTICE
This report was prepared as an account of work sponsored by the United States
Government. Neither the United States nor the United States Department of Energy, nor
any of their employees, nor any of their contractors, subcontractors, or their employees,
make any warranty, express or implied, or assume any legal liability or responsibility for
the accuracy, completeness or usefulness of any information, apparatus, product or
process disclosed, or represents that its use would not infringe privately owned rights.











MONTHLY PERFORMANCE REPORT


FACILITIES DEVELOPMENT GAS COMPANY

JANUARY 1979


I. SYSTEM DESCRIPTION

The Facilities Development Gas Comipjny site is a three-story, multifamily
condominium consisting of 31 units in San Diego, California. Solar energy is
used for preheating domestic hot water (DHW) for the complex. The solar
energy system has an array of flat-plate collectors with a gross area of 520
square feet. The array faces south at an angle of 42 degrees to the hori-
zontal. Potable water is the transfer medium that delivers solar energy from
the collector array to storage. Solar energy is stored underground in an
insulated 1000-gallon glass-lined tank. Preheated water from the storage
tank is supplied, on demand, to 31 conventional 52-gallon CH tanks, Ien
solar energy is insufficient to satisfy the hot water load, two electrical
heating elements, energized separately within the individual CV'. tanks,
provide auxiliary energy for water heating. The system, shown schematically
in Figure 1, has two nodes of solar operation.

Mode 1 Collector-to-Storage: This mode activates when the water tempera-
ture in the collectors is 90F higher than the tr',.i, 'rature of the storage
tank. Water is pulped through the collectors and circulates back to storage
until the temperature difference is 3'F or less.

Mode 2 Stora e-to-DHW Tank: This u"de activates when there is a demand for
hot water replenishriil,_ t by the individual CiW' tank. Water from stor'ad
circulates by thermosiphoning action through a supply service loop to the
individual DHW tanks and returns through a service line to storage. The
water in each DHW tank is maintained at an average tto:-rature which is
thermostatically controlled. When required, additional energy is supplied
by an electrical auxiliary element.


II. PERFORMANCE EVALUATION


INTRODUCTION

The site was occupied in January and the solar energy system oereted irntin-
uously during the month. Solar energy satisfied 13 percent of the eir
ments. The solar energy system provided electrical energy savinr, of 6.2
million Btu.


WEATHER CONDITIONS

During the month, total incident solar energy on the collector array s
18.4 million Btu for a daily average of 1143 Btu per square fi,, t Ihis was
below the estimated average daily solar radiation for this geoira i:i c area


























i E 0


EP100

1 T102


SYPHON DRIVEN C(RC!ULATION LOOP


DOME STIC
HOT
WATER











//


W301
T301
T351


TYPICAL 7 52 GAL
INSTRUMENTED DHW
DHW HEATER HEATER
UNITS (UNIT A)





EP301
EP301


p


K-1 -


P T200



w T201


1000 GAL STORAGE TANK




T202


~.7t'


ir,~iA nii iN Tiiiu MiNTaT UNc


* 30


N


T300 W300
-- --


(P303

I P306
UE10


CU~ U
Vv A I I
SSUPP'I.


4I ilTh2


Figure 1. FACILITIES DEVELOPMENT SOLAR ENERGY SYSTEM SCHEMA TIC


TOTAL
31 APT
DHW
HEATER
UNITS


---/
"i
'I... I,~.,.~..,........~ .. ."/










during January of 1571 Btu per square foot for a south-facing plane with a
tilt of 42 degrees to the horizontal. The average ambient temperature during
January was 53F as compared with the long-term average for January of 55 F.
The number of heating degree-days for the month (based on a 65 F reference)
was 364, as compared with the long-term average of 314. The number of cooling
degree-days was zero, as compared with the average of 10.


THERMAL PERFORMANCE

System During January the solar energy system performed approximately the
same as expected. The expected performance was determined from a dified
f-chart analysis using measured weather and subsysti,' loads as inputs. Solar
energy collected was 7.5 million Btu versus an estimated 7.2 million Btu.
Solar energy used by the system was estimated by assuming that all energy
collected would be applied to the load. Actual solar energy used was 6.4
million Btu. System total solar fraction was 13 percent ve us an estimated
15 percent.

Collector The total incident solar radiation on the collector array for the
nonth of January was 18.4 million Btu. During the period the collector loop
was operating, the total insolation amounted to 15.6 million Btu. The total
collected solar energy for the month of January was 7.5 million Btu, result-
ing in a collector array efficiency of 41 percent, based on total incident
insolation. Solar energy delivered from the collector array to storage was
6.9 million Btu. Energy loss during transfer fr-;u; the collector array to
storage was 0.66 million Btu. This loss represented 9 percent of the energy
collected. Operating energy required by the collector loop was 0.18 million
Btu.

Storage Solar energy delivered to storage was 6.9 million Btu. There were
6.4 million Btu delivered from storage to the DHW subsyst, nr;.rgy loss
from storage was 0.90 million Btu. This loss represented 13 percent of the
energy delivered to storage. The storage efficiency was 87 percent: This is
calculated as the ratio of the sum of the energy removed from storage and the
change in stored energy, to the energy delivered to storage. The average
storage temperature for the month was 90'F.

DHW Load The DHW subsystem consumed 6.4 million Btu of solar energy and
42.4 million Btu of auxiliary electrical energy. The solar fraction of
this load was 13 percent. The hot water load was not determined. The DHW
subsystem resulted in an electrical energy savings of 6.4 million Btu. A
daily average of 749 gallons of DHW was consumed.


OBSERVATIONS

The collected solar energy, the collector loop operating energy, -:,rgy
delivered to storage, solar energy used, and hot water consumed, were derived
from overall solar energy system parameters. The auxiliary electrical energy
used (representing the entire building) was extrapolated fr.iom the averages of
seven instrumented apartment units.









':e hot water load and the average value of the hot water temperature supplied
to the building has not been determined because of inadequate instrumentation.


ENE- .Y 'VI'jS

The solar .nriLrgy syst*-i provided a total electrical energy savings of 6.2
mill ion Btu.


III. TI;' STATUS

;o r tion is req hired at this time.







SrLAR H=A4'NG AND COOLINr, D MONSTRATICN CPP'GPA'


MfNTHLY 0=P0OT
c' I" c UJMMA QY


S A /13I 17-79/ 1


Si T : -ACA! TI TS rVLcVELCo0M=T GAS CS M!'ANY
PE 0cRT DOPTnr): JANJAcY, 197O


S T /SYSTEM DESCPRIo T CN:
THE FACILITIFI )VFVLiVcM-JT SOLAr SYSTF'M : 3VI)ES SERVICE -HT WATER_ TO 31
UNIT T r-= A CCN'~lOM'NTUM. ALL JNITE HAVr =2 rAL LOM c_ =TRTC AAT =" HP AT7 S.
SC-VC7) rr T-4SE 4PT I NSTRU)ENTTD.c THF A DAY nF =LAT-DLATE CnLLECT loS
PPnVIDEF ?) SOUAD4 PFPr OF GPOSC APEA. STDDAGE Ie -P7VIDED 3Y A SMST
10~0 GALLN GLASS LI Nr" 'ANK, INSULATrD AND BJPIEr).

GENEoAL SITE DATA:
INCTIDN'" NrPL40 EM EPGY 18.432


COLLECTED S LA' ENERGY

AVERAGE AM3TENT TEM'DOA'TJJc
AVERAGE 8JILDINr TEMPERATURE
77cc'; 'OLAP 'C NV'oSI 2M cr TC CIK rY
ECSS ODERATING ENERGY
TqTAL SYc'-" OPnpRATT NC cNKjpGY
T'TAL E\'3RSY CCJNSUMlJ D


SUSSYSTEM SJMARv:

LOAD
SOLAR F ACTTON
Sg-Ac 99E5E^ USE)
DDERATING ENEPGV
4UX. TMW-=?M_ cfrERGY
AJ ELECT=1IC FJE_
AUX. FOSSI_ PUrL
EL=C' I-AL SAVT'3GS
=FSSIL SAVI GS


HPT WATcP

M .A ,
6.41 C
2 A.
42. 392
N. A.
N. 10
N A


HYATrI 19


N. A

'.A .
A .
N.A.

N'A4


CCOLI NG
N. A.



N!.A .


N. A.
M.A A


M!LTl- r7N TU


37a66 BTJ/SC.FT.
7'518 MIL-TON FrU
14a&5R TU/S. =T,.
5" DEGOCES F
N.4. )ESR?-F
N3. "
.191 MILLION BTJ
0.181 MITL. ON ?'J
D3.091 kIL-ION BTJ


SYTTEO T"' T
N.o MIL-IDM P"J
N.A, =- = C-rT
6.a13 MIL- IN 3nTJ
C.181 MILI ON BTU
42.'92 VI- 1M ?TJ
42.c?7 MIL ION BTJ
N.A. MIL 'DN ?TU
F.?2'3 'IL ION BTJ
N.A. MILLION 9TU


cYST-M P-P=nPA frC- C ACTCP:


* DENOTES UNAVAILABLE rATA
r Oc '0cS NUL DATA
\.A. DE"'~T=S MT AODLICABLE r)ATA

EFFrPpNCF: JSER'S GJIDE T'n TH F *''THYV "E= Cr M MC E pE EPD RT
on- "-H NA'IONA.L BnLtD ")A 4 PROP PAM, rrJ 3 A 2p, o.,
SC_4 -/3 004-79/19















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S DE\4?TFS J\I A4IL4A LE TDATT
3ENO'TFS N'__ DATA
N.A. DENOT-S JQOT ADPLI"ABL r'ATr

PQF7PENCF: JS;FZ 'S GUIDE TO THE MnNTW-LY DPcDROPMANCE OEonoD
OF THF NA-IONAL Cpt i A AP A PPROG RAM, rcqPJ UA 2Fl1973,
S _)f, R/CO 4-'9/IP


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SCLAr H- A'TINC A!Nj CYCLING thEM*NST ATIC!N PPGrAM


MONTHLY RF 3 T
CbT y rLLY mL L TT AN ST nrPArA


SITr: FaC IIIT IES )--V _DFP" AT qS C'V ANY
Dr-ponT PERInO: JAJJARY,107Q


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D* 3E42TE: U"IAVAILALE DATA.
P DrNOTES NJLL DATA.
N.4. )ENO'"S NO' APPLICABL. DA'A.


J A!:j APV, 0 '97










COLAR HEATING ANn COOLING DEMONS'RA'ION PPD-pGAM


MONTHLY REPORT
STCAGF 3 FOPMANCE


ST' T: FACTLITI"S "5 EV LO' 3MN'T GAC CnOMOAN'
pEonPrT PERIOD: JANUARY, 1979


---------I


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ENERGY
TO
STOOP AG
MI LLI "N
RT U

0.3352
0 '2 0

0.352





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0. 115
0. 25"
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0.47 2
0.1 14
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0 .37
0. 277
0.3 PP
0.252
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0.370
0. 002
0.243
0.? 3?!
0.128
C.241
3. 1 6l
0.053



0.221
-----00--
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EMEPGy CHA!Gr
S~p pI TN 'STODED
c TOPAGc I EN7rGY
MILLION MILLI N
BTU RTU U
-- ------------------
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1 1 -0. 3) 1
C.175 r.'47
C. 1 0. 7
C.2 -0.212
1.7l O1 .l !
0.P -' -0.01
0.205 -0.030
C0.?? C9C
022 -0. 104
0.153 0.1 1

0.142 0.0 4
0.107 0.04P9
.?05 0.122
0.?CI1 -I 0.066
C .2 6 ? -0.101
0.204 -0.00p
r0.1 9 0.0o0
0.239 -0.23
0.109 0.10"
0.21 0.170

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C.207 C.0 1
18P 0 1
0.125 -0.134 I

f.410 --~--C. 4 c5P
___________|-~--~- ----
0.207 -0.015
201 ------------0---
C.2 !2 ?92 j
-


STrPAGE
AVERAGE
T C-M:
T!3



1 02
200
97
101
95
p a
01
99
34
geo
90
92
9-)

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90


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91


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STORAGF
DEFICIENCYY




0.173
0. 554

0. -54
1.143
0. -7 5
0. 379
3 .382
0.707
0.R77
90Q99
0.053
0.960
1.020
2.338
1.39o


3.941
0. 19
0. 931
1 .4 3
1.2 r
1 ^2C
0.783
3.334
n. Q)4 1
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-----~------


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-----------


* 7\1T< UNAVA ILARIC DA TA.
a 9OFnTEFS "UL_ DATA.
N.A, CNOTES NOT APPLTCAF3L- DAtA.


A9/!Cr7-79/01








SOLAP HEATING G ANr) C rtING DE MON r T DTA! "

MH r WTHL' RFCU VOT
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MONTHLY 9EDOIo
ENVIPONMFNTAL SUMMAPY

SITE: FACILITIES DEVELOPMENT GAS COMPANY
pR-onqo OFPPTD: JANUARY,1979


------I----------- ---1-------------
DAY I Tn'AL DIFcUSE t AMBIEM'I DAY IM=
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I MONTH I TE vi
PTuJ/9. Fr P-U/SQ I Y. OFG F CE- F
------------------------------------- ----------
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SDrNOTES UJAVAILAPLE DATA.
9 n)-'. cS- NULL DA'A.
N.A. DENOTES ':3 ADDLICABLE DATA.


SCLAP/1017-79/01


---
PLA'IV"C WI") WIND
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UNIVERSITY OF FLORIDA

Si1262 09052 5311
3 1262 09052 5311


, U.S. G.P 0. 1979--640-189/4143




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