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Optimization of the Number of Thermoelectric Modules in a Thermoelectric Generator for a Specific Engine Drive Cycle

机译:用于特定发动机驱动循环的热电发电机中热电模块数的优化

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Two identical commercial Thermo-Electric Modules (TEMs) were assembled on a plate type heat exchanger to form a Thermoelectric Generator (TEG) unit in this study. This unit was tested on the Exhaust Gas Recirculation (EGR) flow path of a test engine. The data collected from the test was used to develop and validate a steady state, zero dimensional numerical model of the TEG. Using this model and the EGR path flow conditions from a 30% torque Non-Road Transient Cycle (NRTC) engine test, an optimization of the number of TEM units in this TEG device was conducted. The reduction in fuel consumption during the transient test cycle was estimated based on the engine instantaneous Brake Specific Fuel Consumption (BSFC). The perfect conversion of TEG recovered electrical energy to engine shaft mechanical energy was assumed. Simulations were performed for a single TEG unit (i.e. 2 TEMs) to up to 50 TEG units (i.e. 100 TEMs). These TEG units were assumed to be connected mechanically and thermally in series. The simulation results showed that the reduction in fuel consumption with the increase in the number of TEG units was nonlinear and there was a limit to the fuel consumption reduction that could be achieved on the NRTC test case. The maximum fuel saving for this cycle was observed to be less than 3%. A TEG device consisting of 14 TEG units (28 TEMs) was found to recover up to 80% of the thermal energy in the EGR flow-path of the test engine.
机译:两个相同的商业热电模块(TEM)组装在板式热交换器上,在本研究中形成热电发电机(TEG)单元。该单元在试验机的废气再循环(EGR)流动路径上进行测试。从测试中收集的数据用于开发和验证TEG的稳态零维数值模型。使用该模型和EGR路径流动条件从30%扭矩非公路瞬态循环(NRTC)发动机测试,进行了该TEG器件中的TEM单元数量的优化。基于发动机瞬时制动燃料消耗(BSFC)估计瞬态试验周期期间的燃料消耗的降低。假设TEG的完美转换回收到发动机轴机械能的电能。对单个TEG单元(即2 TEM)进行仿真,最多为50 TEG单位(即100间TEM)。假设这些TEG单位机械和热串联连接。仿真结果表明,随着TEG单位数量的增加,燃料消耗的降低是非线性的,并且对NRTC测试案件可以实现的燃料消耗降低有限制。该循环的最大燃料被观察到小于3%。发现由14个TEG单元(28个TEM)组成的TEG器件,在测试发动机的EGR流路中恢复高达80%的热能。

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