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(11) | EP 2 775 134 A1 |
| (12) | EUROPEAN PATENT APPLICATION |
| published in accordance with Art. 153(4) EPC |
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| (54) | METHOD FOR HEATING COOLING LIQUID TO START PREHEATING AND HEATING SYSTEM |
| (57) A method for heating cooling liquid to start preheating comprising: step 1, supply
cooling liquid, which cooling liquid is filled in a circulating water pipe (12); step
2, supply fuel and ignite the fuel to heat the cooling liquid in the circulating water
pipe; step 3, connect the circulating water pipe to an engine (1), and the cooling
liquid is made to circulate in the circulating water pipe in order to continuously
heat the engine; step 4, the exhaust gas generated by fuel combustion is collected
and guided to the bottom of the engine for heating same; and step 5, judge the temperature
of the engine, and stop burning fuel when the temperature of the engine reaches a
threshold value. The method features a low temperature start and a high temperature
cut-off with a higher level of safety. Also disclosed is a system of heating cooling
liquid to start preheating. |
CROSS-REFERENCE TO RELATED APPLICATIONS
TECHNICAL FIELD
BACKGROUND OF THE INVENTION
SUMMARY OF THE INVENTION
Step 1, providing the cooling liquid which is filled in a circulating water pipe;
Step 2, providing fuel and igniting the fuel in order to heat the cooling liquid in the circulating water pipe;
Step 3, connecting the circulating water pipe to an engine, and making the cooling liquid circulate in the circulating water pipe in order to continuously heat the engine;
Step 4, collecting the exhaust gas generated by fuel combustion, and guiding the exhaust gas to the bottom of the engine for heating the engine;
Step 5, judging the temperature of the engine and stopping burning fuel when the temperature of the engine reaches a threshold value.
Step21, developing the fuel into high pressure fuel mist by the high pressure spray at first;
Step22, mixing the high pressure fuel mist with air;
Step23, igniting the mixture of the high pressure fuel mist and the air.
Step41, draining the smoke generated by the initial heating at first.
Step51, achieving the current temperature of the engine;
Step52, comparing the current temperature of the engine with the threshold value, if the engine temperature is higher than the threshold value, then Step 53 is executed;
Step53, sending a signal to stop the fuel burning.
A circulating pipe with cooling liquid, which is connected to a pump for driving the cooling liquid circulation to flow;
A heater covered with the circulating water pipe, which has a fuel pipe for absorbing the fuel from the fuel tank, the fuel is filled into the heater from the fuel pipe, and the fuel is ignited by an ignition;
an internal pipe channel of the heater is connected to the circulating water pipe, the heat is absorbed by the cooling liquid circulation;
an exhaust pipe is also provided to the heater, the exhaust pipe is connected to the below vertical portion of the engine, the opening of the exhaust pipe towards the vertical position;
a temperature sensor which detects the engine temperature and connects a control device to control the heater air-inlet device switch, the heater air-inlet device is used to provide air for the heater.
BRIEF DESCRIPTIONS OF THE DRAWINGS
Figure 1 is a schematic diagram of a system of heating cooling liquid to start preheating.
Figure 2 is a schematic diagram of a process of heating cooling liquid to start preheating.
DESCRIPTIONS OF THE PREFERRED EMBODIMENT
Step 1, providing the cooling liquid which is filled in a circulating water pipe 12, the use of the cooling liquid can convey the heat efficiently, Simultaneously, reducing the possibility of the fire caused by the fault in similar present technology, so as to improve the security significantly by utilizing the cooling liquid;
Step 2, providing the fuel and igniting the fuel to heat the cooling liquid in the circulating water pipe 12; heating cooling fluid by burning fuel is a method for rapid heating, for the convenience of collecting materials, diesel fuel can be selected;
Step 3, connecting the circulating water pipe 12 to an engine 1, and making the cooling liquid circulate in the circulating water pipe 12 in order to continuously heat the engine 1; keeping transfer the heated cooling fluid to the circulating water pipe of the engine 1, transfer the heat to the engine 1 through the heat transfers to increase the temperature of the engine 1;
Step 4, collecting the exhaust gas generated by fuel combustion, and guiding the exhaust gas to the bottom of the engine 1 for heating the engine 1; this is because the exhaust gas generated in step 2 has the high problem, it can be recycled for heating the engine 1 and avoiding the waste of energy;
Step 5, judging the temperature of the engine 1 and stopping burning the fuel when the temperature of the engine 1 reaches a threshold value. The present invention aims to achieve preheating initiation, therefore, when the engine 1 temperature reaches a preset target temperature must stop heating.
Step 21, developing the fuel into high pressure fuel mist by the high pressure spray, and making it easy to be ignited;
Step 22, mixing the high pressure fuel mist with air, this step can be achieved by providing a enclosed space, making the high pressure fuel mist mix with air in the enclosed space;
Step 23, igniting the mixture of the high pressure fuel mist and the air, so that it just have the burning need oxygen, meet the conditions of fuel combustion wherein Step 4 further comprises:
Step 41, draining the smoke generated by the initial heating at first.
Step 51, achieving the current temperature of the engine; in a particular embodiment, this step can be initiated from heating, continues until the whole heating process terminated;
Step 52, comparing the current temperature of the engine with the threshold value, if the engine temperature is higher than the threshold value, then Step 53 is executed to send a signal to stop the fuel burning;
A circulating pipe 12 with cooling liquid, which is connected to a pump 11 for driving the cooling liquid circulation to flow;
A heater 10 covered with the circulating water pipe 12, which has a fuel pipe 6 for absorbing the fuel from the fuel tank 8, the fuel is filled into the heater 10 from the fuel pipe 6, and the fuel is ignited by an ignition;
The engine 1 connects to the circulating water pipe 12, absorbing the heat by the cooling liquid circulation;
An exhaust pipe 5 is also provided to the heater 10, the exhaust pipe is connected to the below vertical position of the engine 1, the opening of the exhaust pipe 5 towards the vertical position,
in the process of fuel combustion, exhaust flows through the exhaust pipe 5 to the below position of the engine 1, because the exhaust has a certain temperature, it can be recycled for heating the engine 1; the temperature sensor 3 which connects to a control device used to detect the temperature of the engine 1 (not shown in figure 1), controller receives the sign of the temperature sensor 3 by a signal receiver, the controller has a differential comparator, if the signals received by temperature sensor 3 is higher than a preset value, then the controller will control the heater air-inlet device to close the switch, the heater air-inlet device used to provide air for the heater 10, providing sufficient oxygen for combustion, when do not need to heat, you just need to close the heater air-inlet device, it will stop burning because of the lack of oxygen, so you stop heating.
Step 1, providing the cooling liquid which is filled in a circulating water pipe;
Step 2, providing fuel and igniting the fuel in order to heat the cooling liquid in the circulating water pipe;
Step 3, connecting the circulating water pipe to an engine, and making the cooling liquid circulate in the circulating water pipe in order to continuously heat the engine;
Step 4, collecting the exhaust gas generated by fuel combustion, and
guiding the exhaust gas to the bottom of the engine for heating the engine;
Step 5, judging the temperature of the engine and stopping burning fuel when the temperature of the engine reaches a threshold value.
Step21, developing the fuel into high pressure fuel mist by the high pressure spray at first;
Step22, mixing the high pressure fuel mist with air;
Step23, igniting the mixture of the high pressure fuel mist and the air.
Step41, Draining the smoke generated by the initial heating at first.
Step51, achieving the current temperature of the engine;
Step52, comparing the current temperature of the engine with the threshold value,if the engine temperature is higher than the threshold value, then Step 53 is executed;
Step53, Sending a signal to stop the fuel burning.
A circulating pipe with cooling liquid, which is connected to a pump for driving the cooling liquid circulation to flow;
A heater covered with the circulating water pipe, which has a fuel pipe for absorbing the fuel from the fuel tank, the fuel is filled into the heater from the fuel pipe, and the fuel is ignited by an ignition;
an internal pipe channel of the heater is connected to the circulating water pipe, the heat is absorbed by the cooling liquid circulation;
an exhaust pipe is also provided to the heater, the exhaust pipe is connected to the below vertical portion of the engine, the opening of the exhaust pipe towards the vertical position;
a temperature sensor which detects the engine temperatureand connects a control device to control the heater air-inlet device switch, the heater air-inlet device is used to provide air for the heater.
REFERENCES CITED IN THE DESCRIPTION
Patent documents cited in the description