[Abstract]: The purpose of this report is to outline all the necessary aspects that must be considered in the design of a fully variable “poppet” valve within the current generation spark ignition or compression ignition engines. This encompasses all of the mechanical andudelectrical facets involved with the design, implementation, calibration and also investigates the predicted benefits of such a system. The report includes details of the pumping system, actuating system, control solenoids and control system.ududOther considerations are given to the implications upon the immediate world technically, socially, environmentally and financially with the subsequent completion and integration of the design into the automotive industry.udDue to the time restrictions of this course, integration of the system onto a current generation engine was impossible, however the successful completion of the electronics involved with the control system can be seen to be working; causing the high voltage solenoids to pulse at the required time and duration on the test bench for the approximate desired output. Once this system is retrofitted the pulsed fluid from the high voltage solenoid would contain enough fluid force to lift the appropriate “poppet” valve from its seat.ududIn the completion of this report it is able to be seen that this system or similar will revolutionize both current spark ignition and compression ignition engines in terms of overall power, economy and emission reduction to a degree that has never been seen before in the automotive industry. The conservation of the environment is a high priority in Australia and internationally. Without delving into the intricacies of the debate of greenhouse gases, this report recognizes that vehicle emissions contribute a significant amount pollution. This is why it is imperative to design and implement more efficient engines globally via technologies such as this.
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机译:[摘要]:本报告的目的是概述在当代火花点火或压燃发动机内的全可变“提升”阀设计中必须考虑的所有必要方面。这涵盖了与设计,实施,校准有关的所有机械和电子方面,还调查了这种系统的预期收益。该报告包括抽水系统,致动系统,控制螺线管和控制系统的详细信息。 ud ud还考虑了从技术,社会,环境和财务方面对临近世界的影响,并随后完成了设计并将其集成到设计中。 ud由于本课程的时间限制,无法将系统集成到当前的发动机上,但是可以成功完成与控制系统相关的电子设备的工作;导致高压螺线管在所需的时间和持续时间在测试台上产生脉冲,以获得近似所需的输出。一旦对该系统进行了改装,来自高压螺线管的脉冲流体将包含足够的流体力,以从其阀座上提起合适的“提升”阀。 ud ud在完成本报告后,可以看出该系统或类似系统它将在整体功率,经济性和排放减少方面革新当前的火花点火和压缩点火发动机,达到汽车行业前所未有的水平。在澳大利亚和国际上,环境保护都是重中之重。在不研究温室气体争论的复杂性的情况下,本报告认识到车辆排放物造成了严重的污染。这就是为什么必须通过诸如此类的技术在全球范围内设计和实施更高效的发动机的原因。
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