Thread Content
Gentlemen! I would like to ask why, with our company’s natural gas-fired heat transfer oil boilers, it takes several attempts to ignite the burner when the ignition temperature is set at 150 degrees, whereas it ignites with just one attempt when the ignition temperature is set at 120 degrees. What’s the problem here? Urgent, urgent, urgent. . . . . . . .
My personal opinion: It’s probably a problem with the burner. Why can’t the ignition temperature of the burner be set to 120 degrees? It should not have an impact on other aspects
There are high demands from active users on our side! The return oil temperature must reach 150 degrees for them to be able to carry out production normally! With our heat transfer oil furnaces, it’s necessary to set the startup temperature above 120 degrees; otherwise, they won’t ignite, and it takes several attempts to get them to light up
It doesn’t work! Above 120 degrees, it’s the same – it won’t ignite! It took many attempts to get it to ignite
Have the boiler manufacturer deal with this!
The ignition temperature and the external supply temperature of the heat transfer oil are not the same thing. What does ignition temperature mean?
The ignition temperature refers to the maximum temperature set, for example, at 179 degrees; when the boiler is burning and the heat transfer reaches 179 degrees, the boiler stops. When the minimum temperature is set at 120 degrees, the boiler starts up once the heat transfer temperature inside it drops to 120 degrees! With our boilers, if the ignition temperature is set above 120, they won’t ignite! It took several attempts before it caught fire. However, ignition can be performed at temperatures below 120 degrees. Light it in one go. I don’t know what the reason is now?
The ignition temperature is the same as the external supply temperature
Strange, interesting. I want to know.