Inverter Condensing Boiler
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- Inverter Condensing Boiler
- Inverter Condensing Boiler
DMSI

- Operating efficiency (more than 92%) is high thanks to the inverter.
- Power expense is reduced by 50% compared to other conventional boilers.
- Noise level is reduced by 10% or more.
- Purge loss is reduced by 5% or more.
- It produces high-quality steam and hot water.
- The responsiveness to water quality is high.
- It is eco-friendly, producing NOx under 40ppm. (optional)
- One boiler infinitely changes its operating mode depending on
the load, thus its operating efficiency is by far greater than that
of boiler number control type.
DMSI Specifications
Steam and Hot Water Boiler (Gas, Oil Type)
| Model |
Unit |
| DMSI-100 |
DMSI-150 |
DMSI-200 |
DMSI-250 |
DMSI-300 |
DMSI-350 |
DMSI-400 |
DMSI-450 |
DMSI-500 |
DMSI-600 |
DMSI-700 |
DMSI-800 |
DMSI-1000 |
DMSI-1200 |
DMSI-1500 |
DMSI-2000 |
| 1,000 |
1,500 |
2,000 |
2,500 |
3,000 |
3,500 |
4,000 |
4,500 |
5,000 |
6,000 |
7,000 |
8,000 |
10,000 |
12,000 |
15,000 |
20,000 |
|
1G |
|
1.5G |
2G |
|
2.5G |
3G |
3.5G |
4G |
4.5G |
5~5.5G |
6~6.5G |
7~8G |
10G |
13G |
| 7 ( Option : 10, 12, 14, 16 ) |
| 92 |
| 15 |
23 |
28 |
33 |
39 |
52 |
56 |
65 |
74 |
86 |
98 |
111 |
138 |
170 |
203 |
265 |
| 3.2 |
3.5 |
4 |
5 |
6 |
9 |
11 |
13 |
14 |
16 |
19 |
21 |
25 |
27 |
33 |
40 |
| 1.2 |
1.7 |
2.1 |
2.3 |
2.8 |
4.2 |
4.3 |
4.8 |
5.2 |
6.0 |
7.1 |
9.7 |
11.2 |
16.6 |
19.2 |
26.6 |
| 67.9 |
101.8 |
135.7 |
169.6 |
203.6 |
237.5 |
271.4 |
305.4 |
339.3 |
407.1 |
475.0 |
542.8 |
678.6 |
814.3 |
1,017.8 |
1,357.1 |
| 69.9 |
104.8 |
139.8 |
174.7 |
209.7 |
244.6 |
279.6 |
314.5 |
349.5 |
419.3 |
489.2 |
559.1 |
698.9 |
838.7 |
1,048.4 |
1,397.8 |
| 48.2 |
72.3 |
96.4 |
120.5 |
144.6 |
168.7 |
192.8 |
216.9 |
241.0 |
289.2 |
337.4 |
385.6 |
482.0 |
578.4 |
723.0 |
964.0 |
| 31.2 |
46.8 |
62.4 |
78.0 |
93.6 |
109.2 |
124.8 |
140.4 |
156.0 |
187.2 |
218.4 |
249.6 |
312.0 |
374.4 |
468.0 |
624.0 |
| 63.0 |
94.5 |
126.0 |
157.6 |
189.1 |
220.6 |
252.1 |
283.6 |
315.1 |
378.1 |
441.2 |
504.2 |
630.2 |
756.3 |
945.4 |
1260.5 |
| 22.0 |
32.9 |
43.9 |
54.9 |
65.9 |
76.8 |
87.8 |
98.8 |
109.8 |
131.7 |
153.7 |
175.6 |
219.5 |
263.4 |
329.3 |
439.0 |
| 57.0 |
85.5 |
114.1 |
142.6 |
171.1 |
199.6 |
228.1 |
256.6 |
285.1 |
342.2 |
399.2 |
456.2 |
570.3 |
684.3 |
855.4 |
1140.6 |
| Inverter Proportional System |
| Forced Draft Fan (Blast Type) |
| High Voltage Electric Spark |
| Heat - Pipe Type |
| GA-10 |
GA-15 |
GA-20 |
GA-25 |
GA-30 |
GA-35 |
GA-40 |
GA-45 |
GA-50 |
GA-60 |
GA-70 |
GA-80 |
GA-100 |
GA-120 |
GA-150 |
GA-200 |
| 0.25 |
0.3 |
0.35 |
0.4 |
0.45 |
0.5 |
0.77 |
0.79 |
0.82 |
1.0 |
1.13 |
1.26 |
1.43 |
1.71 |
1.9 |
2.7 |
| Vertical Multistage Centrifugal Pump |
| 2.2×2 |
2.2×2 |
2.2×2 |
2.2×2 |
4×2 |
4×2 |
4×2 |
4×2 |
4×2 |
4×2 |
5.5×2 |
5.5×2 |
7.5×2 |
11×2 |
11×2 |
15×2 |
| Vertical Multistage Centrifugal Pump |
| 3.7 |
5.5 |
7.5 |
11 |
11 |
11 |
11 |
11 |
15 |
15 |
19 |
22 |
30 |
37 |
45 |
57 |
| 25 |
40 |
40 |
50 |
50 |
50 |
50 |
50 |
50 |
65 |
65 |
80 |
80 |
80 |
80 |
100 |
| 50 |
65 |
80 |
80 |
80 |
80 |
100 |
100 |
125 |
125 |
150 |
150 |
200 |
200 |
200 |
250 |
|
100 |
|
125 |
125 |
|
125 |
150 |
150 |
200 |
200 |
200 |
250 |
250 |
250 |
250 |
| 25 |
25 |
40 |
40 |
40 |
40 |
40 |
40 |
40 |
40 |
40 |
40 |
50 |
50 |
50 |
65 |
| 40 |
40 |
40 |
40 |
40 |
40 |
40 |
40 |
40 |
40 |
40 |
50 |
50 |
50 |
50 |
50 |
| 300×435 |
350×480 |
400×565 |
400×605 |
430×625 |
430×665 |
480×725 |
480×725 |
464×775 |
580×755 |
580×865 |
580×935 |
640×955 |
750×1065 |
810×1115 |
1160×1170 |
| 300 |
350 |
350 |
400 |
440 |
470 |
500 |
540 |
560 |
620 |
670 |
710 |
800 |
870 |
980 |
1,130 |
| 3,160 |
3,700 |
3,830 |
3,960 |
4,125 |
4,940 |
4,545 |
5,120 |
5,050 |
5,645 |
5,790 |
6,415 |
6,730 |
7,520 |
8,170 |
9,265 |
| 1,770 |
1,890 |
2,035 |
2,100 |
2,245 |
2,325 |
2,475 |
2,475 |
2,575 |
2,575 |
2,775 |
2,900 |
3,100 |
3,240 |
3,350 |
3,940 |
| 2,200 |
2,565 |
2,790 |
2,885 |
3,005 |
3,100 |
3,320 |
3,395 |
3,565 |
3,615 |
3,800 |
3,960 |
4,225 |
4,350 |
4,700 |
5,200 |
|
Boiler
Body |
Rated Evaporation |
kg/hr |
| Hot Water |
Gcal/hr |
| Max-Working Pressure |
kg/㎠ |
| Efficiency |
% |
| Heating Surface |
㎡ |
| Weight |
Ton |
| Contained Water |
Ton |
Fuel consumption |
Light Oil |
kg/hr |
| LNG |
N㎥/hr |
| LPG+AIR |
N㎥/hr |
Propane (LPG) |
N㎥/hr |
| kg/hr |
| Butane( L P G ) |
N㎥/hr |
| kg/hr |
| Burner |
Combustion Ctrl. |
|
| Burner Type |
|
| Ignition System |
|
Air
Pre-Heater |
Type |
|
| Model |
|
| Weight |
Ton |
Power Consumption |
Feed Water Pump |
Type |
| kW×Quantity |
| Blower Motor |
kW |
Connection
Bore
Diameter |
Gas Inlet |
A |
| Oil Inlet |
A |
| Main Steam Outlet |
A |
| Hot Water Inlet & Outlet |
A |
| Feed Water Inlet |
A |
| Drain |
A |
Installation
Summary |
Exhaust Port |
mm |
| Flue Duct |
mmØ |
| Length |
mm |
| Width |
mm |
| Height |
mm |
| Scroll bar >> |
- Fuel consumption was based on the net heating value.(Light Oil: 10,300 kcal/㎏, LNG: 11,000 / 10,000 kcal/N㎥, LPG + AIR: 15,400 / 14,500 kcal/N㎥, Propane: 24,350 / 22,400 kcal/N㎥, Butane: 31,840 / 29,500 kcal/N㎥)
- Supply gas pressure was based on the inter-stage pressure (2,000 ~ 4,000 mmAq)
- Calorie generation was based on the steam pressure of 10kg/㎠, steam enthalpy of 663.7 kcal/kg, and feed water temperature of 20℃.
- For light oil models, Hi-Low-Off type is adopted to from the base model up to DMSI-350P.
- Boiler efficiency is under rated load based on the net heating value.
- Boiler efficiency and calories can be reduced depending on site conditions as well as measurement error.
- Height of the hot water boiler is raised (by 1,000 mm).
- Inlet/outlet temperature of the hot water boiler is based on △T35℃(55℃->90℃).
- The above specification table can be unexpectedly changed in order to improve performance.