Abstract
To address the difficulty of starting diesel engines under ultra-low ambient temperatures, this paper proposes and designs a cold-start system based on a small spark-ignition diesel engine. The small SI diesel engine serves as a unified energy hub, simultaneously providing exhaust waste heat, coolant sensible heat, and electrical power converted from crankshaft output. This enables multi-objective coordinated preheating for oil, coolant, and the power battery. We have established a one-dimensional thermal flow network model comprising the cooling circuit, oil preheating circuit, and engine block, and constructed a power battery preheating model. At −60 °C, under conditions of an optimized energy allocation strategy (35 % electrical energy for engine oil, 65 % for the battery) and a small SI diesel engine operating at 3500 r/min, the oil, coolant and battery can be simultaneously heated to 20 °C, 60 °C and 10 °C respectively within 10 min, thereby meeting the requirements for reliable cold starting of the diesel engine. Compared to a 60 kW fuel-operated auxiliary heating scheme, the preheating time is reduced by approximately 50 %. 76.8 % of the energy input to the system is effectively utilized for synergistic preheating, demonstrating the high energy efficiency and reliability advantages of this cold-start system based on a small SI diesel engine when deployed in extremely cold regions.
| Original language | English |
|---|---|
| Article number | 129520 |
| Journal | Applied Thermal Engineering |
| Volume | 288 |
| DOIs | |
| Publication status | Published - Mar 2026 |
| Externally published | Yes |
Keywords
- Energy-allocation strategy
- Hybrid preheating
- Small SI diesel engine
- Ultra-low-temperature cold-start
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