Flow control heat dissipation component, intelligent temperature management system and heat dissipation method thereof, and engine
A technology of heat dissipation components and valve components, which is applied in the direction of engine components, engine cooling, machines/engines, etc., can solve the problems of mixture gas combustion speed detonation, mixture gas combustion speed slowing down, affecting engine power torque, etc., to achieve reduction Emissions, improvement of output characteristics, effects of fuel economy improvement
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Embodiment 1
[0078] Embodiment one: if Figure 1 to Figure 21 As shown, the flow control heat dissipation assembly includes a housing 1, and the expansion control section 2 and the diversion cooling section 3 are sequentially arranged in the housing 1;
[0079] The opening end of the expansion control section 2 is used to receive cooling air, and transmit the cooling air to the diversion cooling section 3, the opening end faces the direction of the diversion cooling section 3, and the diameter of the expansion control section 2 gradually converges, The diversion cooling section 3 is used for heat dissipation;
[0080] The housing 1 is also provided with a partition plate 4, which runs through the expansion control section 2 and the diversion cooling section 3 in sequence, and divides the interior of the housing 1 into a cylinder head cooling cavity 28 and a cylinder cooling chamber. Cavity 29;
[0081] The cylinder head cooling cavity 28 is provided with a first valve 8 assembly, and the...
Embodiment 2
[0090]Embodiment 2: This embodiment is further optimized on the basis of Embodiment 1, an intelligent temperature management system, the intelligent temperature management system is used to control a flow-controlling heat dissipation component described in any one of claims 1-5, including A controller, the controller is used to control the heat dissipation of the cylinder head cooling chamber 28 and the cylinder body cooling chamber 29 respectively. In order to further precisely control the intake of cooling air, this solution also has an intelligent temperature management system, through which the opening of valve 8 can be precisely controlled, so as to control the intake of cooling air and achieve the effect of controlling heat dissipation; And because the cylinder head 27 and the cylinder body have different demands on temperature, it is necessary to dissipate heat from the cylinder head 27 and the cylinder body respectively. In this solution, a controller is also provided, ...
Embodiment 3
[0091] Embodiment 3: This embodiment is further optimized on the basis of Embodiment 2, the heat dissipation method of the intelligent temperature management system, the specific working principle of the control steps of the controller controlling the heat dissipation of the cylinder head cooling chamber 28 is: the control basis of this system Based on the calculation and analysis results of the sensor data, the timely heat dissipation of the engine 26 is calculated, and the calculation result is converted into a control signal for the opening degree of the valve 8, that is, active heat dissipation control to eliminate temperature conduction hysteresis. In the first step, the total combustion calorific value of the engine 26 is calculated by the data sent by the throttle opening sensor 11 and the fuel flow sensor 12 and the set value of the engine air-fuel ratio; The filling efficiency of the cylinder is calculated by the sensor 14; further, the combustion state of the cylinder...
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