Systems for a multi-fuel capable engine
US-2015377159-A1 · Dec 31, 2015 · US
US10060375B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10060375-B2 |
| Application number | US-201615016812-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 5, 2016 |
| Priority date | Feb 10, 2015 |
| Publication date | Aug 28, 2018 |
| Grant date | Aug 28, 2018 |
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An abnormality diagnosis apparatus is an apparatus that diagnoses a fuel leak from a fuel passage to circulate a liquefied gas fuel between a fuel tank and an internal combustion engine. The abnormality diagnosis apparatus includes: a control device; a low-pressure temperature sensor arranged at a discharge port of a feed pump; and a high-pressure temperature sensor arranged at an overflow fuel emission port of a supply pump. The control device detects a decrease in the temperature of the liquefied gas fuel at the overflow fuel emission port on the basis of a comparison between the measured values of the two temperature sensors, thereby determining that the fuel leak is caused in a section from the discharge port to the overflow fuel emission port.
Opening claim text (preview).
What is claimed is: 1. An abnormality diagnosis apparatus that diagnoses a fuel leak from a fuel passage to circulate a liquefied gas fuel between a fuel tank and an engine, the fuel passage including a low pressure pump, which pressure-feeds the liquefied gas fuel stored in the fuel tank, and a high pressure pump, which pressurizes and pressure-feeds the liquefied gas fuel discharged from the low pressure pump to the engine, the abnormality diagnosis apparatus comprising: a first measuring part that is arranged at a first part of the fuel passage and that measures a temperature of the liquefied gas fuel discharged from a discharge port of the low pressure pump; a second measuring part that is arranged at a second part of the fuel passage and that measures the temperature of the liquefied gas fuel emitted without being pressurized from the high pressure pump; and a determination part that detects a decrease in the temperature of the liquefied gas fuel at the second part on the basis of a comparison between a measured value of the first measuring part and a measured value of the second measuring part, thereby determining that the fuel leak is caused in a section from the discharge port as the first part to the high pressure pump as the second part on the basis of a comparison between the respective measured values. 2. The abnormality diagnosis apparatus according to claim 1 , further comprising: a tank measuring part that measures a temperature in the fuel tank, wherein the determination part detects a decrease in the temperature of the liquefied gas fuel at the discharge port on the basis of a comparison between a measured value of the tank measuring part and the measured value of the first measuring part, thereby determining that the fuel leak is caused in a section from the fuel tank to the low pressure pump. 3. The abnormality diagnosis apparatus according to claim 2 , wherein the determination part determines the fuel leak caused in the section from the discharge port to the high pressure pump and then determines the fuel leak caused in the section from the fuel tank to the low pressure pump. 4. The abnormality diagnosis apparatus according to claim 2 , wherein the determination part sets a low-pressure-threshold temperature lower than the measured value of the tank measuring part and in a case where the measured value of the first measuring part is lower than the low-pressure-threshold temperature, the determination part determines that the fuel leak is caused in the section from the fuel tank to the low pressure pump, and wherein the determination part sets a high-pressure-threshold temperature lower than the measured value of the first measuring part and in a case where the measured value of the second measuring part is lower than the high-pressure-threshold temperature, the determination part determines that the fuel leak is caused in the section from the discharge port to the high pressure pump. 5. The abnormality diagnosis apparatus according to claim 4 , wherein a difference between the measured value of the tank measuring part and the low-pressure-threshold temperature is larger than a difference between the measured value of the first measuring part and the high-pressure-threshold temperature. 6. The abnormality diagnosis apparatus according to claim 1 , diagnosing a fuel leak from the fuel passage including a leak fuel line, which circulates the liquefied gas fuel as a leak fuel emitted from an emission port of the high pressure pump, and a shutoff valve, which switches between circulating and interrupting the liquefied gas fuel in the leak fuel line, and the abnormality diagnosis apparatus further comprising: a third measuring part that measures a temperature of the liquefied gas fuel flowing into an inflow port of the shutoff valve, wherein the determination part detects a decrease in the temperature of the liquefied gas fuel at the inflow port on the basis of a comparison between the measured value of the second measuring part and a measured value of the third measuring part, thereby determining that the fuel leak is caused in a section from the emission port to the inflow port. 7. The abnormality diagnosis apparatus according to claim 6 , wherein the determination part determines the fuel leak caused in the section from the emission port to the inflow port and then determines the fuel leak caused in the section from the discharge port to the high pressure pump. 8. The abnormality diagnosis apparatus according to claim 6 , wherein the determination part sets a high-pressure-threshold temperature lower than the measured value of the first measuring part and in a case where the measured value of the second measuring part is lower than the high-pressure-threshold temperature, the determination part determines that the fuel leak is caused in the section from the discharge port to the high pressure pump, and wherein the determination part sets a return threshold temperature lower than the measured value of the second measuring part and in a case where the measured value of the third measuring part is lower than the return threshold temperature, the determination part determines that the fuel leak is caused in the section from the emission port to the inflow port. 9. The abnormality diagnosis apparatus according to claim 8 , wherein a difference between the measured value of the first measuring part and the high-pressure-threshold temperature is larger than a difference between the measured value of the second measuring part and the return threshold temperature. 10. The abnormality diagnosis apparatus according to claim 6 , diagnosing a fuel leak from the fuel passage including the leak fuel line to return the liquefied gas fuel as the leak fuel, which is not used for combustion in the engine, to the fuel tank, and the abnormality diagnosis apparatus further comprising: a fourth measuring part that is arranged at a high temperature part closer to the engine than the inflow port of the leak fuel line and that measures a temperature of the liquefied gas fuel emitted from the engine, wherein the determination part detects a decrease in the temperature of the liquefied gas fuel in the high temperature part on the basis of a comparison between the measured value of the third measuring part and a measured value of the fourth measuring part, thereby determining that the fuel leak is caused in a section from the inflow port to the engine. 11. An abnormality diagnosis apparatus that diagnoses a fuel leak from a fuel passage to circulate a liquefied gas fuel between a fuel tank and an engine, the fuel passage including a low pressure pump, which pressure-feeds the liquefied gas fuel stored in the fuel tank, and a high pressure pump, which pressurizes and pressure-feeds the liquefied gas fuel discharged from the low pressure pump to the engine, the abnormality diagnosis apparatus comprising: a first measuring part that is arranged at a first part of the fuel passage and that measures the temperature of the liquefied gas fuel sucked into a low pressure suction port of the low pressure pump, a second measuring part that is arranged at a second part of the fuel passage and that measures a temperature of the liquefied gas fuel sucked into a high pressure suction port of the high pressure pump, and a determination part that detects a decrease in the temperature of the liquefied gas fuel at the second part on the basis of a comparison between a measured value of the first measuring part and a measured value of the second measuring part and that determines that the fuel leak is caused in a section from the low pressure suction port as the first part to the high pressure suction port as th
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