in-line diesel engine 中文意思是什麼

in-line diesel engine 解釋
串列式柴油機
  • in : adv 1 朝里,向內,在內。 A coat with a furry side in有皮裡子的外衣。 Come in please 請進來。 The ...
  • line : n 1 線;繩索;釣絲;測深度用繩,捲尺。 a fishing line 釣魚線。 be clever with rod and line 會釣魚...
  • diesel : n. 1. 〈d-〉 = Diesel engine [motor] 柴油機,內燃機。 Diesel oil 柴油。2. R. Diesel 狄賽爾(1858-1913),德國柴油機發明者。
  • engine : n. 1. 機械,機器。2. 引擎,蒸汽機,發動機。3. 機車,車頭。4. 工具;〈古語〉方法,手段。vt. 給…安裝發動機。
  1. This paper describes the details of a study made on electronically controlled system for high - pressure common rail fuel injection diesel associated with ecu, controlled software and integrated development environment, with an electronically controlled high - pressure common rail type fuel injection system installed in an in - line - 6 - cylinder turbocharged and intercooled di diesel engine. the study brings the concept of integrated development environment for electronically controlled diesel engine based on can bus, and describes its modules and functions in detail

    高壓共軌電控噴射系統是第三代時間控制式電控系統的典型代表,它不僅能在所有工況范圍內實現穩定的高壓噴射,而且由於高性能的電磁閥,使系統可以實現靈活的噴油規律(如預噴射、后噴射等) ,極大地改善了排放。
  2. This new technology changes from the traditional method by which the induced and compressor wheel separately are designed and produced to a new one by which the one - piece compressor is designed. on the basis of this new technology and the optimum blade profile, the performance of both the compressor and the turbocharger is largely improved. through the heating power calculation of the compressor, the analysis of the surge and the block of the compressor, the test - bed performance test of the turbocharger, the matching test of turbocharger and diesel engine, the propulsion test of the turbocharger on plateau condition, it is proved that the newly - designed compressor not only has high efficiency, but also improves the flow distribution in the high efficiency area so that the propulsion line can run through the high efficiency area

    主要內容包括:提出一種全新的壓氣機葉輪技術和概念,這種技術將傳統的導風輪和壓氣機分開設計、單獨加工改為整體設計、整體加工的單體葉輪;從增壓器與柴油機配機計算所得出的基本參數出發,通過對壓氣機進行熱力計算,確定壓氣機的基本結構參數;再對葉型以及葉輪輪廓與葉輪罩殼的配合間隙進行優化,對新設計的壓氣機進行喘振和堵塞分析;通過增壓器平臺性能試驗,驗證了新設計的壓氣機的性能水平得到了較大的提高,達到了提高增壓器的整體性能水平的目的;通過增壓器與柴油機配機試驗、以及增壓器用於高原條件下的牽引試驗,驗證了新設計的壓氣機不但具有高效率,還改善了高效率區的流量分佈,使牽引特性線貫穿高效率區。
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