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- diffuse fraction of global solar irradiance 漫射輻射與總輻射之比
- Solar irradiance decreases towards the poles. 太陽(yáng)輻照率向兩極遞減。
- Intercomparison of Spectroradiometers for Global and Direct Solar Irradiance in the Visible Range. 可見(jiàn)譜段太陽(yáng)總輻射和直接輻射分光輻射計觀(guān)測結果的比較。
- daily global solar irradiation 太陽(yáng)逐日總輻射
- The time scale for substantial solar irradiance change is in the order of a century or centuries. 太陽(yáng)的輻射度要出現大變動(dòng),牽涉一個(gè)或數個(gè)世紀的長(cháng)時(shí)間。
- Global Temperature Forced by Solar Irradiation and Greenhouse Gases? 全球溫度受到太陽(yáng)輻照和溫室氣體的強迫嗎?
- Cloud Coverage Based on All-Sky Imaging and Its Impact on Surface Solar Irradiance. 基于全天候圖像獲得的云量以及對地表太陽(yáng)輻照度的影響。
- The most possible contributing factors for whole China are wind speed, DTR, sunshine time, solar irradiance. 影響中國整體蒸發(fā)皿蒸發(fā)下降的最可能原因是風(fēng)速、日較差、日照時(shí)數和總輻射。
- The treated semi-conductor material that converts solar irradiance to electricity. 經(jīng)過(guò)特殊處理可將太陽(yáng)能輻射轉換成電力的半導體材料.
- There is an optimum solar irradiance, which let the cooling production and COP achieve maximum value, respectively. 冰箱性能與太陽(yáng)輻射和熱電制冷元件冷熱端溫差等條件有很大關(guān)系,存在分別使COP和制冷量達到最大值的最佳太陽(yáng)輻照度。
- Global Solar uses a technology known as copper indium gallium selenide (CIGS) to make its thin-film solar cells. 全球太陽(yáng)能利用技術(shù)稱(chēng)為銅銦鎵硒( CIGS )將其薄膜太陽(yáng)能電池。
- Changes in solar irradiance since 1750, the panel now says, have amounted to an increase of about 0.1 watts per square metre of the Earth's surface. 委員會(huì )說(shuō),自1750年至今,太陽(yáng)對地球表面輻射的絕對值每平方米增加了0.;1瓦特。
- With the headquarter in Ulm, Germany, it designs, develops and manufactures products for the global solar power market. 產(chǎn)品包括:太陽(yáng)能充電控制器、系統管理器、燃料電池及太陽(yáng)能混合系統、微型水利發(fā)電機、直流燈及冰箱等。
- Information about solar irradiance on the lunar surface is the key to understanding lunar-surface temperature distribution. 摘要月表太陽(yáng)輻射是深入研究月表溫度分布的關(guān)鍵問(wèn)題之一。
- For roofs without greening, the air temperature increase is all strongly positive to solar irradiance during a random period of days. 對于無(wú)綠化屋頂,無(wú)論熱作用周期的長(cháng)短,內表面對空氣的增溫量與太陽(yáng)輻射照度的變化都呈現很強的正向性。
- "It's going to serve the purpose of keeping out the elements, but it's also going to generate power for you," Global Solar's Britt says. “這將起到維持的要素,但它也將發(fā)電為你” ,全球太陽(yáng)能電池的布里特阿說(shuō)。
- An instrument system for atmospheric transmittance by measuring solar irradiance in the visible and near-infrared spectral range was developed. 通過(guò)測量太陽(yáng)輻射值計算整層大氣透過(guò)率的方法簡(jiǎn)單易行且精度高。
- The existing models for forecasting hourly total solar irradiance are unsatisfactory in forecast errors and the generalization capability. 現有的地面太陽(yáng)逐時(shí)總輻射預測模型的預測精度及泛化能力尚不能令人滿(mǎn)意。
- The three-step work flow chart of absolute radiometer that can measure the “minus radiation”, solar irradiance and electric compensation has been investigated. 研究出了用電功率補償三步測量工作流程同時(shí)測量這一“負輻射”量和太陽(yáng)輻照度的方法。
- A figure that shows the variation of evaporation temperation, ambient air temperation, solar irradiance on the collector plate, wind velocity rate and the value of COP with time is made. 給出了冬季的一天系統蒸發(fā)溫度、環(huán)境溫度、太陽(yáng)總的輻射密度、環(huán)境風(fēng)速和系統COP值隨時(shí)間變化曲線(xiàn)。