Invention Grant
- Patent Title: Regeneration method for exhaust-gas aftertreatment device in engine-driven compressor, and engine-driven compressor provided with said aftertreatment device
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Application No.: US15502626Application Date: 2014-09-03
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Publication No.: US10253709B2Publication Date: 2019-04-09
- Inventor: Tasuku Hayakawa
- Applicant: HOKUETSU INDUSTRIES CO., LTD
- Applicant Address: JP Niigata
- Assignee: HOKUETSU INDUSTRIES CO., LTD.
- Current Assignee: HOKUETSU INDUSTRIES CO., LTD.
- Current Assignee Address: JP Niigata
- Agency: Cooper Legal Group, LLC
- Agent Ronald M. Kachmarik
- International Application: PCT/JP2014/073178 WO 20140903
- International Announcement: WO2016/035164 WO 20160310
- Main IPC: F01N3/025
- IPC: F01N3/025 ; F01N3/10 ; F02D41/02 ; F02D9/02 ; F02D41/14 ; F02D41/40 ; F04B35/00 ; F04B49/06 ; F04B49/22 ; F02D29/04

Abstract:
Provided is a forced-regeneration treatment method for an exhaust-gas aftertreatment device (DPF) and an associated engine-driven compressor. When the amount of particulate matter (PM) deposited in a filter element of a DPF reaches a predetermined amount and a forced-regeneration start command is input, a capacity controlling means of the engine-driven compressor is disabled to close an intake valve and to open the discharge side of a compressor main unit to atmosphere, thereby causing the compressor main unit to achieve a low-load state. The operation mode of the engine is switched to a predetermined forced-regeneration mode to operate the engine at a predetermined speed and to increase the temperature of the gas. The temperature inside the DPF is increased to reach a temperature at which an oxidative catalyst is activated and to a temperature lower than the self-combustion temperature of the PM, thereby forcibly burning the PM.
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