提高发动机制动效率的气动马达设计及初步试验

R. Malpress, D. Buttsworth
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引用次数: 0

摘要

节流式内燃机的制动效率在低负荷运行时降低,因为发动机工作需要降低进气歧管压力。这些节流损失是所有节流发动机在小于大开节流(WOT)时所经历的。通过将节流阀板更换为合适的空气马达,可以在膨胀过程中恢复工作,将诱导空气压力降低到与节流发动机相同的进气歧管压力。为了最大限度地发挥空气马达与发动机循环耦合的好处,空气应在燃烧前的某一点返回到与节气箱相同的热状态。这可以通过以下方式实现:(i)在气缸压缩之前通过再生热传递到诱导空气;或(ii)通过增大压缩比的钢瓶压缩。感应式空气马达(IAM)产生的功可以直接应用于发动机输出,从而提高相同指示功的制动效率。本文报道了一种用于降低发动机低负荷运行时进气压力的IAM的性能。提高制动效率。IAM设计规范使用包括等熵效率、摩擦和使用寿命考虑在内的数值模型进行探索。已经制造了一个原型,并在与节流发动机相当的流量和压力下进行了台架测试。这些试验表明,模拟的摩擦小于实验中测量的摩擦。从原型机进行的实验来看,IAM的净性能将为同等节流发动机提供超过5%的效率提升,负载范围为其WOT功率的10%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Air motor for improved engine brake efficiency Design and preliminary experiments
The brake efficiency of a throttled internal combustion engine is reduced at low load operation because of the engine work required to drop the intake manifold pressure. These throttling losses are experienced by all throttled engines operating at less than wide open throttle (WOT). By replacing the throttle plate with a suitable air motor, work can be recovered in an expansion process that reduces the induced air pressure to the same intake manifold pressure as the throttled engine. To maximize the benefits from coupling the air motor to the engine cycle, the air should be returned to a thermal state identical to that of the throttled case at some point prior to combustion. This might be achieved either: (i) prior to cylinder compression via regenerative heat transfer to the inducted air; or (ii) through cylinder compression at an increased compression ratio. The work generated by the Induction Air Motor (IAM) can be directly applied to the engine output thereby increasing the brake efficiency for the same indicated work. This paper reports on the performance of an IAM designed to reduce intake pressure of an engine for low load operation. Increased brake efficiency will be achieved. The IAM design specifications are explored using a numerical model including isentropic efficiency, friction and service life considerations. A prototype has been constructed and was bench tested at flows and pressures comparable to a throttled engine. These tests indicated that the modelled friction was lower than the friction measured during the experiments. From the experiments performed with the prototype, the net performance of an IAM will give efficiency improvements in excess of 5% for an equivalent throttled engine operating at loads in the range up to 10 % of its WOT power.
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