Investigation of a refrigeration system based on combined supercritical CO2 power and transcritical CO2 refrigeration cycles by waste heat recovery of engine

Исследование холодильной системы на основе объединённых сверхкритического энергетического цикла на CO2 и транскритического холодильного цикла на CO2 с использованием теплоты отработавших газов двигателя
Youcai Liang, Zhili Sun, Meirong Dong, Jidong Lu, Zhibin Yu
2020-05-16

combined cyclerefrigerated truck coolingsupercritical CO2 power cycletranscritical CO2 refrigeration cyclewaste heat recovery
The majority of the energy in the fuel burned in the internal combustion engines is lost in the form of waste heat. To address this issue, waste heat recovery technology has been proposed to increase the overall efficiency of engine. This paper investigates a heat driven cooling system based on a supercritical CO2 (S-CO2) power cycle integrated with a transcritical CO2 (T-CO2) refrigeration cycle, aiming to provide an alternative to the absorption cooling system. The combined system is proposed to produce cooling for food preservation on a refrigerated truck by waste heat recovery of engine. In this system, the S-CO2 absorbs heat from the exhaust gas and the generated power in the expander is used to drive the compressors in both S-CO2 power cycle and T-CO2 refrigeration cycle. Unlike the bulky absorption cooling system, both power plant and vapour compression refrigerator can be scaled down to a few kilo Watts, opening the possibility for developing small-scale waste heat driven cooling system that can be widely applied for waste heat recovery from IC engines of truck, ship and train. A new layout sharing a common cooler is also studied. The results suggest that the concept of S-CO2/T-CO2 combined cycle sharing a common cooler has comparable performance and it is thermodynamically feasible. The heat contained in exhaust gas is sufficient for the S-CO2/T-CO2 combined system to provide enough cooling for refrigerated truck cabinet whose surface area is more than 105 m2.
1
A combined supercritical CO2 power and transcritical CO2 refrigeration cycle uses engine exhaust heat to generate cooling for refrigerated trucks.
2
A configuration sharing a common cooler has comparable performance and is thermodynamically feasible.
3
Engine exhaust heat is sufficient to cool a refrigerated-truck cabinet with a surface area exceeding 105 m².
4
Power produced by the supercritical CO2 expander drives compressors in both the power cycle and refrigeration cycle, enabling heat-driven vapor-compression cooling.
5
The proposed system can be scaled to a few kilowatts, offering a compact alternative to bulky absorption refrigeration for waste-heat recovery in trucks, ships, and trains.

A combined supercritical CO2 power and transcritical CO2 refrigeration cycle system driven by internal-combustion-engine waste heat for refrigerated-truck cooling

Thermodynamic feasibility and cooling performance of the waste-heat-driven combined cycle, including the shared-common-cooler configuration

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2020-05-16
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Youcai Liang
Zhili Sun
Meirong Dong
Jidong Lu
Zhibin Yu
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