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Soot load sensing in a Diesel Particulate Filter via electrical capacitance tomography

机译:通过电容层析成像技术检测柴油机微粒过滤器中的烟尘负荷

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Diesel engines are widely used in heavy duty trucks and off road vehicles due to their fuel efficiency and high power outputs. Environmental regulatory agencies have pushed ever stringent regulations on all internal combustion engines, including Diesel engines on gaseous as well as particulates (soot) emissions. In order to meet today's and tomorrow's stringent emission requirements, modern diesel engines are equipped with diesel particulate filters (DPF's), as well as onboard technologies to evaluate the status of DPF. In course of time, particulate matter (soot) will be deposited inside the DPFs which tend to clog the filter and hence generate a back pressure in the exhaust system, negatively impacting the fuel efficiency. To remove the soot build-up, regeneration (active or passive) of the DPF must be done as an engine exhaust after treatment process at pre-determined time intervals. Since the regeneration process consume fuel, a robust and efficient operation based on accurate knowledge of the particulate matter deposit (or soot load) becomes essential in order to keep the fuel consumption at a minimum. In this paper, we propose a sensing method for a DPF that can accurately measure in-situ soot load using Electrical Capacitance Tomography (ECT). Simulation results show that the proposed method offers an effective way to accurately estimate the soot load in DPF. The proposed method is expected to have a profound impact in improving overall PM filtering efficiency (and thereby fuel efficiency), and durability of a Diesel Particulate Filter (DPF) through appropriate closed loop regeneration operation.
机译:柴油发动机由于其燃料效率和高功率输出而广泛用于重型卡车和越野车辆。环境监管机构已经对所有内燃机实施了严格的法规,包括对柴油机的气态排放以及微粒(烟尘)排放。为了满足当今和未来的严格排放要求,现代柴油发动机配备了柴油微粒过滤器(DPF),以及用于评估DPF状态的机载技术。随着时间的流逝,颗粒物(煤烟)会沉积在DPF内部,这会堵塞过滤器,从而在排气系统中产生背压,从而对燃油效率产生负面影响。为了消除积炭,必须在预定的时间间隔内进行处理后,将DPF的再生(主动或被动)作为发动机排气进行。由于再生过程会消耗燃料,因此,基于对颗粒物沉积物(或烟尘负荷)的准确了解而进行的强大而有效的操作对于将燃料消耗保持在最低水平至关重要。在本文中,我们提出了一种DPF的传感方法,该方法可以使用电容层析成像(ECT)准确测量原位烟灰负荷。仿真结果表明,该方法为准确估计DPF中的烟尘负荷提供了一种有效的方法。预期通过适当的闭环再生操作,所提出的方法将对改善整体颗粒物过滤效率(从而提高燃油效率)和柴油机微粒过滤器(DPF)的耐久性产生深远影响。

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