排出蒸氣 的英文怎麼說

中文拼音 [bèichūzhēng]
排出蒸氣 英文
discharge steam
  • : 排構詞成分。
  • : Ⅰ動詞1. (蒸發) evaporate2. (利用水蒸氣的熱力使食物熟或熱) steam Ⅱ名詞[中醫] (將藥物隔水蒸熟) steaming
  • : Ⅰ名詞1 (氣體) gas 2 (空氣) air 3 (氣息) breath 4 (自然界冷熱陰晴等現象) weather 5 (氣味...
  • 排出 : discharge; exhaust; squeeze; transpire; eject; snapout; vent; mobilize; pump
  • 蒸氣 : steam; vapour蒸氣供暖 steam heating; 蒸氣管 steam pipe; 蒸氣管道 steam pipeline; 蒸氣渦輪機 steam...
  1. This paper discusses the designing and making of the dynamic testing systems of engine electronic control system. base on the construction and operation principle of santana 2000gsi m3. 8. 2 engine electronic control systems, design and manufacture led circuit of dynamic testing and fault imitating electronic control unit. on the inspect board, design and equip with motronic 3. 8. 2 ecu i / o measuring joints, design and set up obd - ii diagnostic communication link, design and install fuel pressure inspecting meter. depend on the obd - ii diagnostic communication link and ecu i / o measuring joints, this dynamic testing system can inspect engine electronic fuel injection system, distributorless ignition system, idle speed control system and evaporative emission control system, and can inspect m3. 8. 2 sensors, ecu and actuators, and can interrogate fault memory and erase fault memory ; and can analyse data stream ; and can carry out fault imitating. besides, this paper analyses sensors and actuators typical fault w aves

    2電控單元電路連接器設計製成輸入輸電子控制檢測端子,並在檢測面板上布置了obd -診斷插座和燃油壓力表。使該動態測試系統能實現對電噴發動機的燃油系統、直接點火系統、怠速控制系統和燃油放控制系統的動態檢測;並通過obd -診斷座、 ecu輸入輸檢測端子和故障模擬處理單元實現對電噴發動機電控系統各傳感器、電控單元、執行器進行故障碼讀取與清除;動態數據讀取和波形測試和故障模擬等。此外,本論文還分析了傳感器和執行器典型故障波形。
  2. The crankcaseventilation system, using a road-draft tube, vented the crankcase vapors and blow-by gas into the atmosphere.

    採用行車抽吸管的曲軸箱通風系統,給曲軸箱內的和竄漏入大提供了口。
  3. When “ holding ” ( during normal operation ), non condensable, which are coming from air ingress and oxygen content in steam and condensate, must also be extracted normally by main ejectors

    當「建立真空」 (正常操作下)時,空入口處的不可凝結物和汽中的氧含量以及凝結水必須由主抽汽器
  4. The condenser should be hot enough to allow venting of some of the volatiles carried in the steam.

    冷凝器的熱度,應足以使中的一些揮發物質
  5. The key to that is a so - called rankine cycle engine, which captures waste heat from the car ' s exhaust and puts it back to work to heat water, which gets converted to steam to power an electric generator, which in turn charges the car ' s battery pack

    這項技術的關鍵是被稱為「林肯循環引擎」 ,它抓住了廢熱從汽車的尾,使它重新投入工作,以熱水轉化為汽,啟動電動發電機。
  6. This paper proposes the use of steam condensate to wash the acidulation tail gas, then to be used as wash water for washing phosphogypsum, to be returned to the crystallizer, and a calculation is made of water balance in the system, so that the discharge of wastewater and waste gas is up to standard

    本文提汽冷凝液洗滌酸解尾,然後用於洗滌磷石膏的洗水,返回結晶槽,並對系統的水平衡進行計算,可以實現硝酸磷肥生產的廢水和廢的達標放。
  7. The air used to dry grain in ventilated stores provides both the energy needed to evaporate the moisture from the grain and the medium to transport this moisture out of the store

    在裝備有通風設備的糧庫里,用於使穀物保持乾燥的空不僅提供了穀物中水分發所需要的能量,而且還是將這些水分糧庫的媒介。
  8. Top of the bucket has overflow vent, which can effectively prevent vapor locking of the steam, and air blocking phenomenon ( non - condensing heat air may also be vented )

    吊桶頂部設有溢孔,可有效防止汽汽鎖,空堵現象(非凝結性的高溫空也可除) 。
  9. Abstract : the causes for low efficiency of the heater in no. 2 crude unit of jpc refinery are described and analyzed including water leaking of steam soot blower, dew point corrosion caused by steam, soot deposits in convection chamber owning to poor soot blowing, high flue gas temperature, no heat recovery of flue gas, and poor performance of insulation lining, etc. by using sonic soot removing system, flue gas recovery system, spray coating of fiber and rock wool, as well as adjustment of flow scheme accordingly in the technical revamping. the dew point corrosion is completely eliminated, the insulation performance is improved, the heat loss is reduced by 1. 25 %, the flue gas temperature is reduced to about 170, and the heater efficiency is increased from 83 % to more than 90 %

    文摘:分析了金陵石油化工公司煉油廠二套常減壓裝置加熱爐存在的因汽吹灰器漏水,汽引起露點腐蝕及吹灰效果差造成對流室積灰,煙溫度高,煙熱量未回收利用以及爐子保溫襯里效果差等問題,提採用聲波除灰系統、煙回收系統、纖維噴塗和巖棉噴塗及相應的流程調整等改造措施.測定結果表明,本次技術改造解決了因汽吹灰器漏水所造成的露點腐蝕問題,提高了保溫效果,減少散熱損失1 . 25 % ,煙溫度降至170左右,裝置的爐效率由83 %左右提高到90 %以上
  10. The causes for low efficiency of the heater in no. 2 crude unit of jpc refinery are described and analyzed including water leaking of steam soot blower, dew point corrosion caused by steam, soot deposits in convection chamber owning to poor soot blowing, high flue gas temperature, no heat recovery of flue gas, and poor performance of insulation lining, etc. by using sonic soot removing system, flue gas recovery system, spray coating of fiber and rock wool, as well as adjustment of flow scheme accordingly in the technical revamping. the dew point corrosion is completely eliminated, the insulation performance is improved, the heat loss is reduced by 1. 25 %, the flue gas temperature is reduced to about 170, and the heater efficiency is increased from 83 % to more than 90 %

    分析了金陵石油化工公司煉油廠二套常減壓裝置加熱爐存在的因汽吹灰器漏水,汽引起露點腐蝕及吹灰效果差造成對流室積灰,煙溫度高,煙熱量未回收利用以及爐子保溫襯里效果差等問題,提採用聲波除灰系統、煙回收系統、纖維噴塗和巖棉噴塗及相應的流程調整等改造措施.測定結果表明,本次技術改造解決了因汽吹灰器漏水所造成的露點腐蝕問題,提高了保溫效果,減少散熱損失1 . 25 % ,煙溫度降至170左右,裝置的爐效率由83 %左右提高到90 %以上
  11. Soon her gigantic hull appeared passing along between the banks, and eleven o clock struck as she anchored in the road

    十一點正,蒙古號一面從汽管噗噗地冒,一面就在這煙霧彌漫的港灣里拋了錨。
  12. The dried material is put into the middle of shell, mixing by the rake teeth and the material shaft works back and forth. the indirect heating, equal agitation of rake teeth and grinding of breaking stick makes water in material evaporation. under the effect of vacuum system, the water in the dried material and apparent water are discharged and the vapor water is discharged from outlet of vacuum pump passing dry dust collector, wet dust collector and condenser

    被乾燥物料從殼體上方正中間加入,在不斷正反轉動的耙的攪拌下,物料軸向來回走動,與殼體內壁接觸的表面不斷更新,受到汽的間接加熱,耙的均勻攪拌,粉碎棒的粉碎,使物料內的水份化,在真空系統的作用下,使被乾燥物料內部水份和表面水份更有利的化的水份經乾式除塵器濕式除塵器冷凝器,從真空泵口處放空。
  13. Two kinds of representative cc - repowering ( feed water heating repowering, full firing repowering ) are study in this paper. the concise performance expressions and typical data are analyzed for the combined cycle and for repowering the existed steam power station

    本文針對兩種典型的聯合循環系統(助燃型和給水加熱型)進行了研究,給了這兩種聯合循環及其在用以增容改造已有的汽輪機電廠時的性能簡明示式和典型數據。
  14. A ejector for is applied in this theory. it can not only regulate the evaporating temperature of each high - temperature refrigeratory but also reduce the back - pressure of the compressor when a system applies this theory. at the same time, the exhaust temperature of the compressor becomes low and the refrigerating capacity per unit of swept volume becomes high

    鑒于目前這種現狀,本文提了以噴射器為基礎的船舶高、低溫冷庫製冷新循環,不但可調節高溫庫的發溫度,而且也可使壓縮機的回壓力得到提高,壓縮機溫度降低,單位容積製冷量上升,製冷系數提高,火用效率提高。
  15. Steam exhausts through this valve

    通過這個閥門
  16. Obviously, it is very helpful to prevent first side outline from overpressure and overheating through the way of discharging the heat generated by cooling system ; and prevent the core of the reactor from being too cooled by limiting the discharge amount of steam

    這有助於:一通過反應堆冷卻系統產生的能量來防止一迴路側超壓和過熱;二通過限制汽向大的釋放量來防止反應堆堆芯過冷。
  17. The condensation heat - exchange characteristic of a separate - type heat - pipe was studied on a 1 : 1 model. the heat pipe is heated by electricity, and working fluid is distilled water, and it is cooled by air. the experimental results show that, ( 1 ) when charging liquid ratio is 45 %, condensation heat - exchange coefficient reaches to maxium ; ( 2 ) when there is not non - condensing gas, the coeffcient decreases a little with the increase of vapour pressure, and it decreases by 9. 5 % when the pressure increases from 0. 16mpa to 0. 36mpa ; ( 3 ) when there is non - condensing gas, the coefficient decreases a little, but when the gas is discharged by an exhaust value, it can be improved, when the volume content of the gas is 2. 5 %, it can increased by 22 % ; ( 4 ) the effect of the non - condensing gas on the coefficient decreases with the increase of the pressure, and when the volume content of the gas is 5 % and the pressure increases from 0. 16mpa to 0. 36mpa, the coefficient increases by 6 %. the relative curves are given between condensation heat - exchange coefficient and air flowrate, charging liquid ratio and vapour pressure

    建立了空冷卻實驗臺,熱管的加熱方式為電加熱,工質為餾水.在1 1模型上對分離式熱管管內凝結換熱特性、不凝性體對凝結換熱的影響及不凝性體的擴散規律進行了試驗,得分離式熱管有一最佳充液率,其值為45 %左右;凝結換熱系數隨著汽壓力的增加略有降低,在實驗的壓力范圍內,降低了9 . 5 % ;不凝性體對分離式熱管的凝結換熱僅影響冷凝段下部較小部分,通過不凝性體可有效地改善冷凝段下部的凝結換熱;隨著壓力的增加,不凝性體對分離式熱管冷凝段的影響減少.這些結論可用於分離式熱管換熱器的工程設計和控制
  18. Abstract : the condensation heat - exchange characteristic of a separate - type heat - pipe was studied on a 1 : 1 model. the heat pipe is heated by electricity, and working fluid is distilled water, and it is cooled by air. the experimental results show that, ( 1 ) when charging liquid ratio is 45 %, condensation heat - exchange coefficient reaches to maxium ; ( 2 ) when there is not non - condensing gas, the coeffcient decreases a little with the increase of vapour pressure, and it decreases by 9. 5 % when the pressure increases from 0. 16mpa to 0. 36mpa ; ( 3 ) when there is non - condensing gas, the coefficient decreases a little, but when the gas is discharged by an exhaust value, it can be improved, when the volume content of the gas is 2. 5 %, it can increased by 22 % ; ( 4 ) the effect of the non - condensing gas on the coefficient decreases with the increase of the pressure, and when the volume content of the gas is 5 % and the pressure increases from 0. 16mpa to 0. 36mpa, the coefficient increases by 6 %. the relative curves are given between condensation heat - exchange coefficient and air flowrate, charging liquid ratio and vapour pressure

    文摘:建立了空冷卻實驗臺,熱管的加熱方式為電加熱,工質為餾水.在1 1模型上對分離式熱管管內凝結換熱特性、不凝性體對凝結換熱的影響及不凝性體的擴散規律進行了試驗,得分離式熱管有一最佳充液率,其值為45 %左右;凝結換熱系數隨著汽壓力的增加略有降低,在實驗的壓力范圍內,降低了9 . 5 % ;不凝性體對分離式熱管的凝結換熱僅影響冷凝段下部較小部分,通過不凝性體可有效地改善冷凝段下部的凝結換熱;隨著壓力的增加,不凝性體對分離式熱管冷凝段的影響減少.這些結論可用於分離式熱管換熱器的工程設計和控制
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