有損耗的 的英文怎麼說

中文拼音 [yǒusǔnhàode]
有損耗的 英文
lossy
  • : 有副詞[書面語] (表示整數之外再加零數): 30 有 5 thirty-five; 10 有 5年 fifteen years
  • : Ⅰ動詞1 (減少) decrease; lose 2 (損害) harm; damage 3 [方言] (用尖刻的話挖苦人) speak sarcas...
  • : Ⅰ動1 (減損; 消耗) consume; cost 2 [方言] (拖延) waste time; dawdle Ⅱ名詞1 (壞的音信或消息) ...
  • : 4次方是 The fourth power of 2 is direction
  • 損耗 : 1. (損失消耗) loss; wear and tear; deterioration; waste 2. [商業] wastage; spoilage
  1. This voluntary code addresses issues such as reduced pesticide use, water and energy conservation, waste reduction and recycling, controlling of erosion, the use of “ good bugs ” in the vineyard to kill the “ bad bugs ”, creating and maintaining a habitat for raptors and other wildlife around the vineyards, planting cover crops such as mustard grass and clover to replenish the soil with nutrients, improved farm worker housing, and other measures for making high quality wines in a responsible manner

    這個自主規定公布了如減少殺蟲劑使用,水和能量守恆,減少和再生,腐蝕控制,利用葡萄園里益蟲殺死害蟲,創造和保護在葡萄園附近鳥類和其他野生動物生存環境,種植覆蓋地表植被如芥菜和三葉草補充土壤養份,改善農場工人住房,和其他能提高葡萄酒質量方法。
  2. Fortunately, iron or iron alloys are available which combine high permeability with small hysteresis loss.

    幸而,目下已兼備高磁導率和低磁導率鐵和鐵合金,可資利用。
  3. Using the beam propagation method ( bpm ) simulation, we confirm that wide controllability of the branching ratio and low excess loss can be realized by this structure

    用bpm方法模擬結果表明,此結構實現了50 - 94不對稱分支比,並且具附加特點。
  4. In the situation that the reflection loss of the duct inwall was not in considering, even condensed the pump beam 100 times, it could realize the output efficiency of more than 70 %, this was that the other coupling way hardly to accomplish

    在不考慮內壁反射情況下,即使將泵浦光束縮束100倍,也能夠實現70 %以上輸出效率,這是現其他耦合方式難以實現
  5. It is well known that to start oscillation, every electronic oscillator, including of course the laser, must have a gain slightly in excess of the loses.

    如所周知,每一個電子振蕩器,當然包括激光器在內,都必須稍大於增益才能開始振蕩。
  6. Abstract : the precision of electric spark machine - shaping is directly related with amount of electrode loss. according to the main factors of effecting on electrode loss, the countermeasures are suggested for decreasing and controlling electrode loss

    文摘:電火花成型加工精度,與電極程度直接關系.針對影響電極主要因素,提出了減少和控制電極相應對策
  7. For the time being we are concerned only with the question of how much we have to pay for obsolescence cost

    這里我們僅關心我們要多少無形問題。
  8. As we all know, the back - pressure valve ( also called evaporating pressure regulator ) is often used to regulate the evaporating temperature of every high - temperature refrigeratory in the system containing many different temperatures but single engine of the ship. but it is neglected that the energy of the system is lost and the efficiency of the system becomes low

    眾所周知船舶單機多庫(簡稱為高、低溫冷庫)系統中,常用背壓閥(蒸發壓力調節閥)來調節各高溫庫蒸發溫度,但忽略了系統無形能量,效率也所下降。
  9. This text research the digitalization monitoring method for the medium loss of electric capacitive equipment : the harmony wave analytic approaches, and then adopt the method to test in scene. the result indicate that this method using in the medium loss testing have higher stability and accuracy

    本文研究了電容性設備絕緣介質數字化監測方法:諧波分析法,並採用諧波分析法在現場進行了測試,結果表明該方法在介測試中具較高穩定性和準確性。
  10. Measurement of microwave permittivity and permeability of homogeneous and lossy isotropic materials. method of measurement for circular coaxial guide

    均勻以及有損耗的各向同性物質微波電容率和滲透率測定.圓形同軸導向裝置測量方法
  11. At last, the paper solves the depreciation problems of the vessel that is sealed up for keeping and port and dock, bringing forward that the parts that are still worn down during the sealed period should be depreciated and the parts having no or less spoilage should not be depreciated according to the theory of parts measurement. the port and dock, able to be wholly renewed through locally overhauling in turn, should apply the method of replacement accounting to process accountancy. xin dawang ( finance and accounting ) directed by professor : shao ruiqing

    上海海運學院jn :學位論義最後論述了封存船舶和港口碼頭折舊問題,本文提出:在部件計價基礎上,船舶封存應只對封存時仍繼續部件計提折舊,其餘未使用或者很小部件則不計提折舊:港口碼頭可以通過局部輪番大修實現整體更新,每個泊位根據大修制度定期進行大修,等到所泊位都經過大修以後,則整個碼頭都同新建碼頭泊位發揮效用相同,進而應運用重置會計對碼頭固定資產進行會計核算,以正確處理港口碼頭修理支出以及折舊計提問題。
  12. The spectral region in the red or near infrared will be emphasized, because this is a region of low loss for optical fibers and therefore of interest for optical communication systems.

    著重研究光譜區域是紅及近紅外波段,因為這是光學纖維低區域,也就是對光通信系統意義區域。
  13. Realization of absorbing boundary condition with lossy media for ground penetrating radar simulation

    地質雷達數值模擬中介質吸收邊界條件實現
  14. First the paper use the different four network operating condition as the primary given conditions and set the 330 / 220kv transformer tap changer position in the standard position, adding the paralleled capacitor bank sets one by one into the network to change the amount of the input reactive power, thus obtained four sets of the 330kv and 220kv bus voltage and the active and reactive power losses changing curves

    進而研究了在每一確定並聯補償電容器組投入量條件下,隨聯變調壓檔位變化而產生出一組並聯補償量、母線電壓與變化曲線。進而選出了隴南電網在四種選定電網運行方式下、最小條件下最優綜合控制組合曲線。
  15. Capacitors dispatch of distribution system is an efficient method to network loss reduction and voltage improvement in the distribution system operation. it is an important component of distribution automation system ( das ). the thesis mainly discusses reactive optimal control of distribution system

    首先,研究了配電網無功優化控制基本理論,討論了配電網無功優化控制對電壓和影響,提出配電饋線電容器優化控制對進一步降低配電網效果顯著。
  16. In order to improve the behavior of transformer protection that is incomplete at present in distinguishing magnetizing inrush current from fault current, the paper puts forward a kind of new principle of transformer differential protection after analyzing the characteristic of magnetizing inrush and active power consume of transformers. this protection uses differential protection based on positive sequence active power as a criterion to discriminate internal faults from magnetizing inrush, and ratio restraint differential current protection as a signal to touch off the protection

    針對當前電力系統中變壓器保護由於勵磁涌流鑒別理論不完善而導致誤動率相對較高問題,論文在分析了變壓器勵磁涌流特性和基礎上,提出了用變壓器正序功功率差動作為區別勵磁涌流和故障電流判據,並以成熟比率制動差流保護作為內外部故障判據變壓器主保護。
  17. In hot summer and cold winter zone, nearly 20 to 30 percent of total thermal loss in residential buildings is caused by the wall. therefore, energy - efficient design in the wall has become a basic research for architectural sustainable development

    在夏熱冬冷地區,外墻熱量約占居住建築總熱量20 30 ,因此,居住建築墻體節能設計研究著重要現實意義。
  18. Distribution of wavelet coefficients in those sub - images is just appropriate for the properties of human vision systerm. it is that eyes are most sensitive to sub - image in the low resolution ratio and less sensitive to sub - images in the high resolution ratio. so a little loss of information in high sub - images may not bring out marked change to vision effect of construct image

    經分解后各個子圖中小波系數分佈恰好適合人類視覺系統特點,即人眼對于低解析度子圖更敏感,對于高解析度子圖較不敏感,因此高解析度子圖中信息稍並不會顯著影響重構后圖像視覺效果,這樣實現圖像高壓縮比就成為可能。
  19. We transformed the nonlinear equation of the light - wave envelope in lossy dispersion - managed optical fibers and obtained numerical curve of the equation with the use of mathematical software, then the approximate solution was found by fitting of the curve, also the envelope propagation of the quasi - soliton was analysed

    摘要對有損耗的色散光纖中光波包絡非線性方程進行變換,藉助數學軟體得到非線性方程數值曲線,並通過對曲線擬合得到方程近似解,對色散管理類明孤子傳輸進行了分析。
  20. Due to restriction with the array aperture transition time, traditional phased array radar works under relative narrow signal bandwidth, so this restricts the application of phased array radar in the field where high performance is demanded. however, optically controlled phased array radar ( ocpar ) adopts the photoelectron technology, counteracts the aperture transition time via the method of optical true time delay ( ottd ), so it can realize wide instantaneous bandwidth and squint - free operation ; meanwhile, it can realize the miniaturization of phased array radar and has super anti - electromagnetism interference capability

    而光控相控陣雷達採用光電子技術,通過光實時延遲方法來抵消孔徑渡越時間,可以實現相控陣雷達寬帶寬角掃描;同時也可以使得相控陣雷達小型化,並具抗電磁干擾能力;另外,由於光纖傳輸具低、頻帶寬等固優點,採用光纖連接雷達天線和雷達控制中心,可以使兩者距離較採用同軸電纜較大提高,更利於保護雷達控制中心。
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