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Comparison Immergas EOLO Star 24-4 E 23.8 kW
230 V
vs Ferroli DIVAtech C24 D 23.3 kW

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Immergas EOLO Star 24-4 E 23.8 kW 230 V
Ferroli DIVAtech C24 D 23.3 kW
Immergas EOLO Star 24-4 E 23.8 kW
230 V
Ferroli DIVAtech C24 D 23.3 kW
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Energy sourcegasgas
Installationwallwall
Typedual-circuit (heating and DHW)dual-circuit (heating and DHW)
Heating area190 m²175 m²
Technical specs
Heat output23.8 kW23.3 kW
Min. heat output6.8 kW
Power supply230 В230 В
Power consumption130 W80 W
Coolant min. T35 °С30 °С
Coolant max. T80 °С90 °С
Heating circuit max. pressure3 bar3 bar
DHW circuit max. pressure10 bar9 bar
Consumer specs
DHW min. T35 °С40 °С
DHW max. T55 °С65 °С
Performance (ΔT=25°C)11.1 L/min13.4 L/min
Performance (ΔT ~30 °C)11.2 L/min
"Summer" mode
Warm start
Circulation pump
Boiler specs
Efficiency93.4 %91 %
Combustion chamberclosed (turbocharged)open (atmospheric)
Flue diameter60/100 mm130 mm
Inlet gas pressure13 mbar20 mbar
Max. gas consumption2.7 m³/h2.73 m³/h
Expansion vessel capacity6 L8 L
Expansion vessel pressure1 bar1 bar
Connections
Mains water intake1/2"1/2"
DHW flow1/2"1/2"
Gas supply3/4"1/2"
Central heating flow3/4"3/4"
Central heating return3/4"3/4"
Safety
Safety systems
gas pressure drop
water overheating
flame loss
draft control
water circulation failure
frost protection
gas pressure drop
water overheating
flame loss
draft control
power outage
water circulation failure
frost protection
More specs
Dimensions (HxWxD)756x440x240 mm700x400x330 mm
Weight29 kg27 kg
Added to E-Catalognovember 2017april 2012

Газовий котел Immergas Eolo Star 24 4 E

Доставка по всій Україні новою поштою! Оплата при отриманні!
Mexter.com.uaWith us more than 10 years
(Kyiv)
Warranty: 24 month manufacturer
Report
28 215 

Газовий котел Immergas Eolo Star 24 4E

Газовий турбірований котел Immergas Eolo Star 24 4E потужністю 23,8 кВт із закритою камерою згоряння забезпечить цілодобовим... moreтеплом і гарячою водою приміщення до 240 м2. Продуктивність гарячої води 11,4 л/хв (при 30°С). Максимальна температура опалення 90°С. Тиск в контурі опалення 0,3 МПа, в контурі ГВС — 1 МПа. Бітермічний теплообмінник з міді. ККД 93,4%. Електронний розпал. Мікропроцесорна система
Instrumentarium.ua6 year with us
(Kyiv)
Report
30 299 

Двоконтурний газовий котел Immergas Eolo Star 24 4 E 3.027046

Двоконтурний газовий котел Immergas Eolo Star 24 4E представляє собою вершину італійської інженерної думки в сфері опалення.... moreВ основі конструкції лежить унікальний бітермічний теплообмінник з міді, який забезпечує надзвичайну ефективність теплопередачі та довговічність експлуатації. При тепловій потужності 24 кВт та ККД 91.4% котел здатний ефективно обігрівати приміщення площею до 250
Teploradost.com.ua7 year with us
(Kyiv)
Warranty: 24 month manufacturer
Report
31 199 

Котел газовий Immergas EOLO STAR 24 4 E 3.027046

Тип теплообмінника: Бітермічний; Віддалене управління по Wi-Fi: Немає; Вбудований бойлер ГВП: Немає; Спосіб встановлення: Нас... moreтінний; Об'єм розширювального бака (л): 6; Країна виробник товару: Словаччина; Матеріал основного теплообмінника: Мідь; Кількість контурів: Двоконтурний; Тип розпалювання: Електронний; Різьбове з'єднання (дюйми): ¾"; Тип димоходу: Турбований (коаксіальний); Теплова потужність (кВт): 24; Тип: Конвекційний; Колір: Білий; Тип тяги: Примусова; Тип камери згоряння: Закрита; Опалювальна площа (м2): 250; ККД (%): 91.4; Призначення: Для квартири; Призначення: Побутові; Призначення: Для приватного будинку
Bom.com.uaNew store
(Kyiv)
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31 199 

Газовий котел Immergas Eolo Star 24 4 E

Газовий навісний двоконтурний турбований котел.Тип теплообмінника: спільний (битермiчний). Модуляція потужності котла: 6,8-23... more,8 кВт. Споживання газу (номінальне) 2,7 м3/год. Наявність труби: в комплекті. Гарантія: 3 роки. Габарити, (В*Ш*Г) 751х440х240мм. Вага котла: 29 кг. Постійний вихід ГВП (л/хв) при Delta t 25 C = 12,5. Виробник: Італія
In-ua.com4 year with us
(Kyiv)
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29 213 
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Glossary

Heating area

A very conditional parameter that slightly characterizes the purpose based on the size of the room. And depending on the height of the ceilings, layout, building design and equipment, actual values may differ significantly. However, this item represents the maximum recommended area of the room that the boiler can effectively heat. However, it is worth considering that different buildings have different thermal insulation properties and modern buildings are much “warmer” than 30-year-old and especially 50-year-old houses. Accordingly, this item is more of a reference nature and does not allow us to fully assess the actual heated area. There is a formula by which you can derive the maximum heating area, knowing the useful power of the boiler and the climatic conditions in which it will be used; For more information on this, see "Useful Power". In our case, the heating area is calculated using the formula “boiler power multiplied by 8”, which is approximately equivalent to use in houses that are several decades old.

Heat output

It is the maximum useful power of the boiler.

The ability of the device to heat a room of a particular area directly depends on this parameter; by power, you can approximately determine the heating area, if this parameter is not indicated in the specs. The most general rule says that for a dwelling with a ceiling height of 2.5 – 3 m, at least 100 W of heat power is needed to heat 1 m2 of area. There are also more detailed calculation methods that take into account specific factors: the climatic zone, heat gain from the outside, design features of the heating system, etc.; they are described in detail in special sources. Also note that in dual-circuit boilers (see "Type"), part of the heat generated is used to heat water for the hot water supply; this must be taken into account when evaluating the output power.

It is believed that boilers with a power of more than 30 kW must be installed in separate rooms (boiler rooms).

Min. heat output

The minimum heat output at which the heating boiler can operate in constant mode. Operation at minimum power allows you to reduce the number of on-and-off cycles that adversely affect the durability of heating boilers.

Power consumption

The maximum electrical power consumed by the boiler during operation. For non-electric models (see Energy source), this power is usually low, as it is required mainly for control circuits and it can be ignored. Regarding electric boilers, it is worth noting that the power consumption in them is most often somewhat higher than the useful one since part of the energy is inevitably dissipated and not used for heating. Accordingly, the ratio of useful and consumed power can be used to evaluate the efficiency of such a boiler.

Coolant min. T

The minimum operating temperature of the heat medium in the boiler system when operating in heating mode.

Coolant max. T

The maximum operating temperature of the heat medium in the boiler system when operating in heating mode.

DHW circuit max. pressure

The maximum pressure in the hot water circuit (DHW) at which it can operate for a long time without failures and damage. See "Heating circuit maximum pressure".

DHW min. T

The minimum temperature of domestic hot water (DHW) supplied by a dual-circuit boiler. For comparison, we note that water begins to be perceived as warm, starting from 40 °C, and in centralized hot water supply systems, the temperature of hot water is usually about 60 °C (and should not exceed 75 °C). At the same time, in some boilers, the minimum heating temperature can be only 10 °C or even 5 °C. A similar mode of operation is used to protect pipes from freezing during the cold season: the circulation of water with a positive temperature prevents the formation of ice inside and damage to the circuits.

It is also worth keeping in mind that when heated to a given temperature, the temperature difference ("ΔT") may be different — depending on the initial temperature of the cold water. And the performance of the boiler in the DHW mode directly depends on ΔT; see below for performance details.

DHW max. T

The maximum temperature of domestic hot water supplied by a dual-circuit boiler. For comparison, we note that water begins to be perceived as warm, starting from 40 °C, and in centralized hot water supply systems, the temperature of hot water is usually about 60 °C (and should not exceed 75 °C). Accordingly, even in the most modest models, this figure is about 45 °C, in the vast majority of modern boilers, it is not lower than 50 °C, and in some models, it can even exceed 90 °C.

Also when heated to a given temperature, the temperature difference ("ΔT") may be different — depending on the initial temperature of the cold water. And the performance of the boiler in the DHW mode directly depends on ΔT; see below for performance details.
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Immergas EOLO Star 24-4 E often compared
Ferroli DIVAtech C24 D often compared