過熱器減壓 的英文怎麼說

中文拼音 [guòjiǎn]
過熱器減壓 英文
deramping
  • : 過Ⅰ動詞[口語] (超越) go beyond the limit; undue; excessiveⅡ名詞(姓氏) a surname
  • : 名詞1. (器具) implement; utensil; ware 2. (器官) organ 3. (度量; 才能) capacity; talent 4. (姓氏) a surname
  • : 壓構詞成分。
  1. Multilevel inverter technology is a pop research in high voltage and high - power converting fields. it can synthesize multilevel output with the distribution of dc voltage and the combination of different switching actions to reduce voltage stress across the switches and bulk of the equipment, and lessen output harmonic distortion and switching loss of the inverter

    多電平逆變是當前高大功率電能變換領域中的研究點之一,它通對直流側的分和開關動作的不同組合,實現多電平階梯波輸出電,能有效地件承受的電應力,縮小裝置體積,小輸出電諧波和開關損耗。
  2. 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

    建立了空氣冷卻實驗臺,管的加方式為電加,工質為蒸餾水.在1 1模型上對分離式管管內凝結換特性、不凝性氣體對凝結換的影響及不凝性氣體的擴散規律進行了試驗,得出分離式管有一最佳充液率,其值為45 %左右;凝結換系數隨著蒸汽力的增加略有降低,在實驗的力范圍內,降低了9 . 5 % ;不凝性氣體對分離式管的凝結換僅影響冷凝段下部較小部分,通排氣閥排出不凝性氣體可有效地改善冷凝段下部的凝結換;隨著力的增加,不凝性氣體對分離式管冷凝段的影響少.這些結論可用於分離式管換的工程設計和控制
  3. 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:建立了空氣冷卻實驗臺,管的加方式為電加,工質為蒸餾水.在1 1模型上對分離式管管內凝結換特性、不凝性氣體對凝結換的影響及不凝性氣體的擴散規律進行了試驗,得出分離式管有一最佳充液率,其值為45 %左右;凝結換系數隨著蒸汽力的增加略有降低,在實驗的力范圍內,降低了9 . 5 % ;不凝性氣體對分離式管的凝結換僅影響冷凝段下部較小部分,通排氣閥排出不凝性氣體可有效地改善冷凝段下部的凝結換;隨著力的增加,不凝性氣體對分離式管冷凝段的影響少.這些結論可用於分離式管換的工程設計和控制
  4. When a reducing valve is used, it makes a closed system ; therefore, a pressure relief valve must be installed in the downstream side of the regulator to protect equipment against excess pressure which is built up by the expansion of water from the domestic hot water supply tank or heater

    如果採用閥,將形成一個封閉系統;因此必須在調節閥的下游位置安裝一個力安全閥,以保護設備不會由於室內水供應容造成的水膨脹而變得大。
  5. With the voltage reduced by half, not only the static power consumption but also the requirement of the heat radiator are lowered accordingly, and the danger of the transistor broken down due to over - voltage is also reduced

    降低一半,不僅少了靜態功耗,也降低了散的使用要求和晶體管因而造成擊穿損壞的危險。
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