DANE: |
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b |
h |
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A |
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L1= |
1000.0 |
[cm] |
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O1= |
150 |
150 |
[cm] |
2.250 |
[m2] |
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H= |
300 |
[cm] |
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L2= |
800.0 |
[cm] |
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O2= |
120 |
120 |
[cm] |
1.440 |
[m2] |
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Współczynnik przenikania ciepła U [W/m2K] |
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Nr |
Typ |
Opis warstw |
Grubość [m] |
λ [W/mK] |
R [m2K/W] |
U [W/m2K] |
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1 |
ŚCIANA |
Tynk cem. - wap. |
0.015 |
0.820 |
0.018 |
54.667 |
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2 |
Cegła silikatowa |
0.250 |
0.900 |
0.278 |
3.600 |
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3 |
Wełna mineralna |
0.080 |
0.040 |
2.000 |
0.500 |
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4 |
Cegła klinkierowa |
0.120 |
1.050 |
0.114 |
8.750 |
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Rsi + Rse = 0,17 |
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0.170 |
5.882 |
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U = |
0.388 |
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Współczynnik przenoszenia ciepła (strat ciepła) przez przenikanie - Htr [W/K] |
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Nr |
Przegroda |
U [W/m2K] |
A [m2] |
btri |
A*U*btri |
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1 |
Ściana zewnętrzna |
0.388 |
46.240 |
1.0 |
17.920 |
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2 |
Okna |
2.000 |
7.380 |
1.0 |
14.760 |
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Σ = |
32.680 |
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Mostki cieplne [W/K] |
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Nr |
Przegroda |
Typ |
btri |
ψe [W/mK] |
le [m] |
btri*ψe*le |
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1 |
Narożnik |
C2 |
1.0 |
-0.100 |
3.000 |
-0.300 |
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2 |
Okna - nadproże |
W11 |
1.0 |
0.000 |
5.400 |
0.000 |
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3 |
Okna - podokiennik |
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1.0 |
0.000 |
5.400 |
0.000 |
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4 |
Okna - ościeżnica |
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1.0 |
0.000 |
10.800 |
0.000 |
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5 |
Połączenie ze stropem |
IF5 |
1.0 |
0.600 |
35.690 |
21.414 |
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Σ = |
21.114 |
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Całkowity współczynnik strat ciepła przez przenikanie [W/K] |
Htr = |
53.794 |
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Pojemność cieplna ścian zewnętrznych [J/K] |
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Nr |
Warstwa |
ρ [kg/m3] |
Cp [J/kg*K] |
d [m] |
A [m2] |
C [J/K] |
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1 |
Tynk cem. - wap. |
700 |
1000 |
0.015 |
87.180 |
915390.0 |
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2 |
Cegła silikatowa |
1900 |
1000 |
0.085 |
87.180 |
14079570.0 |
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Σ = |
14994960.0 |
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Pojemność cieplna ścian wewnętrznych [J/K] |
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Nr |
Warstwa |
ρ [kg/m3] |
Cp [J/kg*K] |
d [m] |
A [m2] |
C [J/K] |
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1 |
Tynk cem. - wap. |
700 |
1000 |
0.015 |
110.920 |
1164660.0 |
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2 |
Cegła silikatowa |
1900 |
1000 |
0.060 |
110.920 |
12644880.0 |
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Σ = |
13809540.0 |
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Pojemność cieplna sufitu [J/K] |
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Nr |
Warstwa |
ρ [kg/m3] |
Cp [J/kg*K] |
d [m] |
A [m2] |
C [J/K] |
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1 |
Tynk cem. - wap. |
700 |
1000 |
0.015 |
64.920 |
681660.0 |
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2 |
Płyta żelbetowa |
2400 |
1000 |
0.085 |
64.920 |
13243680.0 |
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Σ = |
13925340.0 |
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Pojemność cieplna podłogi [J/K] |
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Nr |
Warstwa |
ρ [kg/m3] |
Cp [J/kg*K] |
d [m] |
A [m2] |
C [J/K] |
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1 |
Parkiet |
700 |
1600 |
0.020 |
64.920 |
1454208.0 |
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2 |
Wylewka cem. |
2100 |
1000 |
0.040 |
64.920 |
5453280.0 |
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3 |
Styropian |
50 |
1450 |
0.030 |
64.920 |
141201.0 |
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4 |
Płyta żelbetowa |
2400 |
1000 |
0.010 |
64.920 |
1558080.0 |
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Σ = |
8606769.0 |
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Cm= |
51336609.00 |
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Obliczenia współczynnika strat ciepła przez wentylację - wentylacja naturalna |
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Wymagania higieniczne (k=1) |
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Ilość [szt.] |
V [m3/h] |
V0 [m3/h] |
Vve,1,mn=V0 [m3/h] |
bve,1 |
ρa*ca [J/(m3*K)] |
ρa*ca*bve,1*Vve,1,mn [W/K] |
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Kuchnia |
1 |
70.0 |
120 |
0.0333 |
1.000 |
1200 |
40.000 |
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Łazienka |
1 |
50.0 |
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Infiltracja (k=2) |
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Kubatura wentylowana V [m3] |
Vve,2,mn=Vinf [m3/h] |
bve,2 |
ρa*ca [J/(m3*K)] |
ρa*ca*bve,2*Vve,2,mn [W/K] |
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Af= |
64.92 |
194.760 |
0.0108 |
1.000 |
1200 |
12.984 |
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Całkowity współczynnik strat ciepła przez wentylacje: |
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Hve = |
52.984 |
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Roczne zapotrzebowanie ciepła użytkowego do ogrzewania i wentylacji |
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64.92 |
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A20C= |
55.04 |
[m2] |
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θint,H [ºC] = |
20.609 |
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A24C= |
9.880 |
[m2] |
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M-C |
θint,H [ºC] |
θe [ºC] |
θint,H - θe [K] |
tM [h] |
Htr [W/K] |
Qtr [kWh/m-c] |
Hve [W/K] |
Qve [kWh/m-c] |
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1 |
20.609 |
-1.30 |
21.909 |
744 |
53.794 |
876.848 |
52.984 |
863.645 |
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2 |
20.609 |
-2.60 |
23.209 |
672 |
838.986 |
826.353 |
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3 |
20.609 |
3.20 |
17.409 |
744 |
696.746 |
686.255 |
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4 |
20.609 |
8.30 |
12.309 |
720 |
476.739 |
469.560 |
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5 |
20.609 |
13.40 |
7.209 |
744 |
288.514 |
284.170 |
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6 |
20.609 |
18.20 |
2.409 |
720 |
93.295 |
91.890 |
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7 |
20.609 |
17.50 |
3.109 |
744 |
124.421 |
122.547 |
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8 |
20.609 |
17.50 |
3.109 |
744 |
124.421 |
122.547 |
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9 |
20.609 |
13.80 |
6.809 |
720 |
263.714 |
259.743 |
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10 |
20.609 |
9.30 |
11.309 |
744 |
452.607 |
445.792 |
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11 |
20.609 |
1.90 |
18.709 |
720 |
724.621 |
713.710 |
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12 |
20.609 |
-0.80 |
21.409 |
744 |
856.837 |
843.935 |
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Obliczenia zysków ciepła od promieniowania słonecznego |
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Powierzchnia okna A [m2] na danym kierunku: |
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4.500 |
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2.880 |
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qint= |
4.50 |
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M-C |
IN 90 [kWh/(m2m-c)] |
A*IN 90 [kWh/m-c] |
IE 90 [kWh/(m2m-c)] |
A*IE 90 [kWh/m-c] |
C |
g |
kα |
Z |
Qsol [kWh/m-c] |
Qint [kWh/m-c] |
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1 |
21.458 |
96.56 |
24.297 |
69.98 |
0.70 |
0.75 |
1.00 |
1.00 |
87.432 |
202.855 |
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2 |
25.696 |
115.63 |
32.403 |
93.32 |
109.700 |
183.224 |
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3 |
51.752 |
232.88 |
61.564 |
177.30 |
215.349 |
202.855 |
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4 |
68.471 |
308.12 |
86.903 |
250.28 |
293.160 |
196.312 |
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5 |
92.092 |
414.41 |
127.992 |
368.62 |
411.091 |
202.855 |
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6 |
103.163 |
464.23 |
124.431 |
358.36 |
431.862 |
196.312 |
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7 |
106.628 |
479.83 |
129.310 |
372.41 |
447.425 |
202.855 |
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8 |
78.914 |
355.11 |
104.926 |
302.19 |
345.082 |
202.855 |
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9 |
62.508 |
281.29 |
73.300 |
211.10 |
258.505 |
196.312 |
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10 |
40.829 |
183.73 |
45.452 |
130.90 |
165.182 |
202.855 |
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11 |
23.103 |
103.96 |
25.222 |
72.64 |
92.717 |
196.312 |
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12 |
18.201 |
81.90 |
20.030 |
57.69 |
73.285 |
202.855 |
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Roczne zapotrzebowanie na energię użytkową |
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τH.0= |
15 |
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Cm= |
51336609.00 |
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τ= |
133.550 |
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Htr= |
53.794 |
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aH0= |
1 |
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Hve= |
52.984 |
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aH= |
9.903 |
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M-C |
QH,ht [kWh/m-c] |
QH,gn [kWh/m-c] |
gH |
gH,gn |
QH,nd [kWh/m-c] |
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1 |
1740.49 |
290.29 |
0.167 |
1.000 |
1450.21 |
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2 |
1665.34 |
292.92 |
0.176 |
1.000 |
1372.42 |
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3 |
1383.00 |
418.20 |
0.302 |
1.000 |
964.80 |
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4 |
946.30 |
489.47 |
0.517 |
0.999 |
457.17 |
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5 |
572.68 |
613.95 |
1.072 |
0.874 |
36.35 |
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6 |
185.19 |
628.17 |
3.392 |
0.295 |
0.00 |
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7 |
246.97 |
650.28 |
2.633 |
0.380 |
0.01 |
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8 |
246.97 |
547.94 |
2.219 |
0.451 |
0.05 |
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9 |
523.46 |
454.82 |
0.869 |
0.958 |
87.55 |
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10 |
898.40 |
368.04 |
0.410 |
1.000 |
530.39 |
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11 |
1438.33 |
289.03 |
0.201 |
1.000 |
1149.30 |
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12 |
1700.77 |
276.14 |
0.162 |
1.000 |
1424.63 |
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Suma [kWh/rok] = |
7472.879 |
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Długość sezonu grzewczego |
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γH.lim= |
1.101 |
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|
γH |
M-C |
gH.p.m |
gH.k.m |
gH.1 |
gH.2 |
fH.m |
tM [h/m-c] |
tSG [h/m-c] |
|
M-C |
γH.2 < γH.lim |
γH.1 > γH.lim |
γH > γH.lim |
γH <= γH.lim |
|
0.167 |
1 |
0.165 |
0.171 |
0.165 |
0.171 |
1.000 |
744 |
744.000 |
|
1 |
1.000 |
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|
103.042 |
0.176 |
2 |
0.171 |
0.239 |
0.171 |
0.239 |
1.000 |
672 |
672.000 |
|
2 |
1.000 |
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|
7.813 |
0.302 |
3 |
0.239 |
0.410 |
0.239 |
0.410 |
1.000 |
744 |
744.000 |
|
3 |
1.000 |
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|
4.217 |
0.517 |
4 |
0.410 |
0.795 |
0.410 |
0.795 |
1.000 |
720 |
720.000 |
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4 |
1.000 |
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|
1.552 |
1.072 |
5 |
0.795 |
2.232 |
0.795 |
2.232 |
0.512 |
744 |
381.275 |
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5 |
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|
0.512 |
3.392 |
6 |
2.232 |
3.013 |
2.232 |
3.013 |
-0.488 |
720 |
-351.024 |
|
6 |
|
0.000 |
-0.488 |
|
2.633 |
7 |
3.013 |
2.426 |
2.426 |
3.013 |
-3.197 |
744 |
-2378.663 |
|
7 |
|
0.000 |
-3.197 |
|
2.219 |
8 |
2.426 |
1.544 |
1.544 |
2.426 |
-0.328 |
744 |
-244.063 |
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8 |
|
0.000 |
-0.328 |
|
0.869 |
9 |
1.544 |
0.639 |
0.639 |
1.544 |
0.672 |
720 |
483.810 |
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9 |
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|
0.672 |
0.410 |
10 |
0.639 |
0.305 |
0.305 |
0.639 |
1.000 |
744 |
744.000 |
|
10 |
1.000 |
|
|
2.005 |
0.201 |
11 |
0.305 |
0.182 |
0.182 |
0.305 |
1.000 |
720 |
720.000 |
|
11 |
1.000 |
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|
4.812 |
0.162 |
12 |
0.182 |
0.165 |
0.165 |
0.182 |
1.000 |
744 |
744.000 |
|
12 |
1.000 |
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|
24.826 |
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L [m-c] = |
8.2 |
Σ [h/rok] = |
5953 |
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Zapotrzebowanie ciepła użytkowego do podgrzania ciepłej wody QW.nd |
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Dane wejściowe: |
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VCWi = |
48.00 |
dm3/(j.o.) doba |
- jednostkowe dobowe zużycie wody użytkowej |
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Li = |
2.00 |
j.o. |
- liczba jednostek odniesienia |
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tUZ = |
328.5 |
doby |
- czas użytkowania |
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przerwy = |
0.10 |
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- przerwy urlopowe i wyjazdy |
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ηCW = |
55.00 |
ºC |
- temperatura ciepłej wody w zaworze czerpalnym, 55º |
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η0 = |
10.00 |
ºC |
- temperatura zimnej wody |
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kt = |
1.00 |
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- współczynnik korekcyjny dla temp. Innej niż 55º |
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cW = |
4.19 |
kJ/(kg*K) |
- ciepło właściwe wody |
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ρW = |
1000.00 |
kg/m3 |
- gęstość wody |
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QW.nd = |
1486.53 |
kWh/rok |
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Roczne zapotrzebowanie na energię końcową do ogrzewania i wentylacji QK.H |
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Średnia sezonowa sprawność wytworzenia nośnika ciepła z energii dostarczonej do granicy bilansowej budynku |
ηH.g = |
0.77 |
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Średnia sezonowa sprawność akumulacji nośnika ciepła z energii dostarczonej do granicy bilansowej budynku |
ηH.s = |
1.00 |
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Średnia sezonowa sprawność transportu (dystrybucji) nośnika ciepła w obrębie budynku |
ηH.d = |
1.00 |
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Średnia sezonowa sprawność regulacji i wykorzystania ciepła w budynku |
ηH.e = |
0.93 |
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Średnia sezonowa sprawność całkowita systemu grzewczego budynku - od wytwarzania (konwersji) ciapła do przekazania w pomieszczeniu |
ηH.tot = |
0.72 |
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Zapotrzebowanie na energię użytkową przez budynek mieszkalny |
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QH.nd = |
7472.879 |
kWh/rok |
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Zapotrzebowanie na energię końcową przez budynek mieszkalny |
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QK.H = |
10435.524 |
kWh/rok |
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Roczne zapotrzebowanie na energię końcową na potrzebyc.w.u. QK.W |
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Średnia sezonowa sprawność wytworzenia ciepłej wody z energii dostarczonej do granicy bilansowej budynku |
ηW.g = |
0.77 |
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Średnia sezonowa sprawność akumulacji ciepłej wody w budynku |
ηW.s = |
1.00 |
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Średnia sezonowa sprawność transportu (dystrybucji) ciepłej wody w obrębie budynku |
ηW.d = |
0.80 |
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Średnia sezonowa sprawność wykorzystania |
ηW.e = |
1.00 |
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Średnia sezonowa sprawność ogólna systemu ciepłej wody w budynku |
ηW.tot = |
0.62 |
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Zapotrzebowanie na energię użytkową przez budynek mieszkalny |
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QW.nd = |
1486.528 |
kWh/rok |
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Zapotrzebowanie na energię końcową przez budynek mieszkalny |
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QK.W = |
2413.195 |
kWh/rok |
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Roczne zapotrzebowanie na energię pomocniczą |
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Af = |
64.920 |
m2 |
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System ogrzewania |
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qel.H.i [W/m2] |
tel.i [h/rok] |
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0.45 |
5953 |
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Eel.pom.H |
173.91 |
[kWh/rok] |
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System wentylacji |
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qel.V.i [W/m2] |
tel.i [h/rok] |
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0.00 |
0 |
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Eel.pom.V |
0.00 |
[kWh/rok] |
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System przygotowania ciepłej wody użytkowej |
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qel.W.i [W/m2] |
tel.i [h/rok] |
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1.250 |
275 |
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Eel.pom.W |
22.316 |
[kWh/rok] |
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Wyznaczenie wskaźnika EP i EK |
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Współczynnik nakładu nieodnawialnej energii pierwotnej na wytworzenie nośnika energii lub energii do budynku |
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Gaz ziemny |
wH= |
1.1 |
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Gaz ziemny |
wW= |
1.1 |
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Produkcja mieszana |
wel= |
3.0 |
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Roczne zapotrzebowanie na energię pierwotną i końcową |
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QK.H= |
10435.524 |
[kWh/rok] |
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QK.W= |
2413.195 |
[kWh/rok] |
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Eel.pom.H= |
173.913 |
[kWh/rok] |
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Eel.pom.W= |
22.316 |
[kWh/rok] |
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QP.H= |
12000.817 |
[kWh/rok] |
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QP.W= |
2721.463 |
[kWh/rok] |
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QP= |
14722.280 |
[kWh/rok] |
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Wyznaczenie wskaźnika EP i EK |
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Af= |
64.920 |
m2 |
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EK= |
197.916 |
[kWh/m2rok] |
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EP= |
226.776 |
[kWh/m2rok] |
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