Tugas Akhir Mesin
Pemanfaatan panas knalpot sepeda motor menjadi energi listrik DC
The need for energy consumption nowadays becomes very important things, especially the need for electrical energy. Technology to convert heat into electricity directly can be conducted using thermoelectric generators. Thermoelectric generator can convert waste heat to be DC electric. Thermoelectric generator is one of the green technologies needed as an alternative energy. This research uses motorcycle exhaust waste heat at idle (neutral) condition with rotations of 1600 rpm, 2100 rpm, 3100 rpm, and employs 3 identical thermoelectric generators type TE-MOD-5W5V-35S. Due to lack of heat, this research was extended using heater as the heat source. All temperatures in the test were recorded using DAQ MX 9714 NI data logger that was connected to the PC using LabView program. The research was carried out with and without loads. The load used in this experiment was DC fan 12 V0.13 A and thermoelectric cooler type SP1848. The results show that the experiments without load produce the highest voltage of 1.94 V at 3100 rpm with a series circuit, while the test with the load results in the highest power of 0.038 W with a parallel circuit. Moreover, the test using heater without load produces the highest voltage of 3.3 V with series circuit, and the test with load generates the highest power of 0.133 W with a parallel circuit.
The need for energy consumption nowadays becomes very important things, especially the need for electrical energy. Technology to convert heat into electricity directly can be conducted using thermoelectric generators. Thermoelectric generator can convert waste heat to be DC electric. Thermoelectric generator is one of the green technologies needed as an alternative energy. This research uses motorcycle exhaust waste heat at idle (neutral) condition with rotations of 1600 rpm, 2100 rpm, 3100 rpm, and employs 3 identical thermoelectric generators type TE-MOD-5W5V-35S. Due to lack of heat, this research was extended using heater as the heat source. All temperatures in the test were recorded using DAQ MX 9714 NI data logger that was connected to the PC using LabView program. The research was carried out with and without loads. The load used in this experiment was DC fan 12 V0.13 A and thermoelectric cooler type SP1848. The results show that the experiments without load produce the highest voltage of 1.94 V at 3100 rpm with a series circuit, while the test with the load results in the highest power of 0.038 W with a parallel circuit. Moreover, the test using heater without load produces the highest voltage of 3.3 V with series circuit, and the test with load generates the highest power of 0.133 W with a parallel circuit.
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