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Power battery pack dissipation device for hybrid electric vehicle

A technology for hybrid electric vehicles and power battery packs, which is applied in the field of battery pack cooling devices for hybrid electric vehicles. It can solve problems such as uneven temperature field, deviation of wind pressure and flow velocity, and complex structure of air inlet pipes, and achieve uniform temperature field. , the effect of consistent air duct length

Active Publication Date: 2014-05-07
科力远混合动力技术有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The invention solves the unreasonable layout of the air inlet and air outlet of the existing battery pack cooling device, resulting in inconsistent lengths of air ducts inside the battery pack, causing deviations in wind pressure and flow velocity, resulting in inconsistent heat dissipation effects of the battery pack, and partial temperature field Inhomogeneity, the defect that affects the service life and performance of the battery pack, provides a power battery pack cooling device for hybrid electric vehicles, redesigns the positions of the air inlet and the air outlet, and adjusts the relative position and size of the air inlet and the air outlet, so that the The length of the air duct inside the battery pack is consistent, and the temperature field inside the battery pack remains uniform, ensuring the same heat dissipation effect inside the battery pack
[0006] The present invention also solves the problem that the air inlet of the existing battery pack cooling device is set directly above the battery pack, causing the cooling wind to form eddy currents at the support frame inside the battery pack, affecting the heat dissipation effect of the battery pack, and causing the battery pack to vibrate and affect the cooling effect of the battery pack. The service life of the battery pack is limited, and a power battery pack cooling device for hybrid electric vehicles is provided. The position of the air inlet relative to the support frame and the position of the air outlet are reasonably designed to reduce the eddy current generated by the cooling air at the support frame and ensure that the battery pack cooling effect
[0007] The present invention also solves the defects of complicated structure and high design cost of the air intake duct of the existing battery pack cooling device, provides a power battery pack cooling device for hybrid electric vehicles, changes the installation position of the battery pack cooling device, and simplifies the air intake duct , reduce design cost

Method used

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  • Power battery pack dissipation device for hybrid electric vehicle
  • Power battery pack dissipation device for hybrid electric vehicle
  • Power battery pack dissipation device for hybrid electric vehicle

Examples

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Embodiment

[0027] Embodiment: A heat dissipation device for a power battery pack of a hybrid electric vehicle (see attached figure 1 ), the battery pack 8 is installed in the space surrounded by the rear storage board 12, the rear seats 11 and the luggage compartment cover board 14. See attached Figure 5 attached Figure 6 ). The cooling air enters the space where the battery pack is located through the air inlet window, part of the cooling air enters the battery pack to dissipate heat from the battery pack, and the other part dissipates heat from the outside of the battery pack by means of heat conduction and radiation. An air outlet pipe 5 is connected to the bottom of each battery pack, and the air outlet pipe is connected to the cooling fan 6 at the bottom of the battery pack.

[0028] There are two battery packs, forming a left battery pack and a right battery pack. The inside of the battery pack includes battery modules 3 arranged in 5 rows and 4 layers, and each battery modul...

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PUM

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Abstract

The invention relates to a power battery pack dissipation device for a hybrid electric vehicle and aims to overcome the defects that the position arrangement of the air inlet and the air outlet of the existing battery pack dissipation device is not reasonable, which causes that the lengths of air channels in the battery pack are not consistent, the deviation between the wind pressure and the flow rate is caused, the dissipation effect of the battery pack is not consistent, the temperature field part is not uniform, and the service life and the performance of the battery pack are influenced. The battery pack is placed in the space with air inlet windows; the volume of the space is greater than the size of the battery pack; the air inlets are directly communicated with the space; the number of the air inlets is the same as that of support frames in the battery pack, and the positions of the air inlets correspond to those of the support frames; a battery module in the battery pack is partitioned off into equant units; the area of each air inlet corresponding to each unit is the same; the air inlets are opposite to the air outlets, and the air inlets correspond to the support frames, so that the cooling air in the air inlets descends along the support frames and does not cause eddies at the support frames, the lengths in air channels of the battery pack are consistent, the temperature field in the battery pack keeps uniform, and the situation that the dissipation effect in the battery pack is the same is ensured.

Description

technical field [0001] The invention relates to a battery pack structure, in particular to a battery pack cooling device for a hybrid electric vehicle which keeps the battery pack in an optimum temperature range during operation. Background technique [0002] As the main energy storage element of a hybrid vehicle, the battery pack is a pipe component of a hybrid vehicle, and its performance and service life will affect the performance of the vehicle. The vehicle battery pack is composed of multiple battery cells connected in series to form a module, and then the battery pack is formed. The loading space on the vehicle is limited, and the number of batteries required by the vehicle is large, and the batteries are closely arranged and connected. When the vehicle is running under different driving conditions such as high speed, low speed, acceleration, deceleration, etc., the battery will be discharged at different rates, and a large amount of heat will be generated at differen...

Claims

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Application Information

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IPC IPC(8): H01M10/6561H01M10/625
CPCH01M2220/20Y02E60/10
Inventor 储爱华朱建新于海生周陈全马智涛张彤王瑞平
Owner 科力远混合动力技术有限公司
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