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A control method for urea injection of engine after-processor

A post-processor and control method technology, which is applied to the electronic control of exhaust treatment devices, engine components, combustion engines, etc., can solve the problem of difficult control of boundary conditions, high professional level and experience requirements for calibration personnel, and large manpower and labor costs. Material resources and other issues, to achieve the effect of improving research and development efficiency, improving calibration efficiency, and saving development costs

Active Publication Date: 2021-08-17
FAW JIEFANG AUTOMOTIVE CO
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, it is based on the traditional bench calibration, which has the following defects: (1) The calibration period is long, and the test method needs to conduct single-point tests on more than hundreds of operating points for universal characteristics, and the workload is huge
(2) There are many calibration parameters, including SCR maximum ammonia storage capacity, NO x Conversion efficiency, ammonia adsorption time constant map and ammonia release time constant map and other parameter calibration, the calibration is complicated, and the boundary conditions are difficult to control, prone to experimental errors; (3) Calibration of ammonia adsorption time constant map and ammonia release time constant Map, request SCR exit NH 3 The concentration reaches 10ppm, but in the actual bench calibration test, because the SCR itself has a strong ammonia storage capacity, and there is an ASC on the post-processor that specifically absorbs ammonia leakage, so to achieve this condition, each working point needs to spend 0.5- The time varies from 1 hour, the calibration method is complicated, the cycle is long, and the cost is high
[0005] In order to accurately control the injection amount of urea in the SCR post-processor, it is necessary to finely calibrate the complex chemical reactions that occur in the SCR post-processor. The traditional calibration method is mainly based on the engine bench calibration, which requires more than hundreds of universal characteristics. A single-point test is carried out at each working point, and then verified by the standard WHTC (transient cycle: World harmonized transient cycle) and WHSC (steady-state cycle: World harmonized steady state cycle). This method has a long calibration period, high cost, and consumes A large amount of manpower and material resources, and requires high professional level and experience of calibration personnel and other disadvantages
In addition, the urea injection method is basically open-loop control, which is only suitable for stable engine conditions. When the whole vehicle is actually running, it works under transient conditions, so the urea injection controlled by the traditional calibration method will exist. large error

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  • A control method for urea injection of engine after-processor
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  • A control method for urea injection of engine after-processor

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Embodiment

[0059] This embodiment provides a method for controlling urea injection of an engine post-processor, such as figure 1 Shown:

[0060] (1) Test data collection, including post-processor sample bench test data collection and engine bench data collection. Among them, the collected engine bench data includes engine speed, torque, SCR post-processor upstream NO, NO x , O 2 Input such as gas concentration, upstream temperature of SCR post-processor, and urea injection amount at the last moment.

[0061] Post-processor mock-up stand, such as figure 2 As shown, it includes gas storage tank, gas mixing unit, heat exchanger, catalytic reactor, tail gas treatment unit and emission instrument. In the small sample bench, the mixing of different gas components can be controlled in the test gas mixing unit, and the gas is heated through a heat exchanger, thereby simulating the reaction of the engine SCR afterprocessor at different temperatures. The catalytic reactor is to intercept a p...

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Abstract

The invention relates to a method for controlling urea injection of an engine post-processor. The control method comprises the following steps: respectively collecting gas concentration data and temperature data of the engine bench in a small sample bench test of the post-processor; inputting the collected temperature data into The temperature field distribution of different axial positions in the SCR post-processor is calculated in the SCR temperature model; the collected gas concentration data and temperature field distribution are input into the SCR chemical kinetic model for calculation and then flow into each gas component collected by the engine bench The amount of the catalytic converter is input into the gas concentration equation to obtain the calculated ammonia storage of the SCR carrier, and then judge the calculated ammonia storage of the SCR carrier and the preset value of the ammonia storage of the SCR carrier, thereby realizing the injection control of urea. The present invention realizes the closed-loop control of urea injection by calculating the amount of ammonia storage in the SCR carrier in a forward direction, thereby realizing tail gas NO x The conversion rate reaches over 96%, making the emissions finally meet the requirements of China VI and above emission regulations.

Description

technical field [0001] The invention relates to the field of automobiles, in particular to a method for controlling urea injection of an engine post-processor. Background technique [0002] At present, with the upgrade of engine emission regulations, the National VI regulations NO x (nitrogen oxides) requirements are more stringent. In order to meet the requirements of China VI emission regulations, SCR (Selective catalytic reduction: Selective catalytic reduction) post-processor is generally used to reduce NO x . Among them, urea injection control is the key. On the one hand, urea must reach a certain amount of injection to ensure high-efficiency NO x Transformation, so that the emission meets the requirements of the National VI emission regulations. On the other hand, from the perspective of economy and urea crystallization, the amount of urea injection should not be too much. Therefore, precise control of urea injection is the core technology. [0003] CN109411027A d...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F01N11/00F01N3/20F01N13/00
CPCF01N3/2066F01N3/208F01N11/00F01N11/002F01N13/00Y02T10/12Y02T10/40
Inventor 张艳辉林福容孙传红刘佳陈粹文张惠
Owner FAW JIEFANG AUTOMOTIVE CO