JAPANESEHD熟女熟妇,三级国产三级在线,一本加勒比hezyo无码资源网,亚洲中文字幕在线观看

 homepage  >  Industry news

What are the key energy-saving indicators of energy-saving glass?

Posted by: ZXM ELECTROMECHANICAL    Time:10/30/2023 10:01:38 AM

The main function of building doors and windows is lighting and warmth, with the improvement of people's living standards, residential users are more inclined to use large-area glass doors and windows, so that the indoor can get full natural lighting and outdoor open vision during the day. However, the insulation performance of doors and windows is the worst compared to the four major envelopes of walls, roofs and grounds, and the energy consumption of doors and windows accounts for about 40%~50% of the total energy consumption of the building envelope. In order to maintain a comfortable temperature indoors, it is only possible to use a lot of energy, such as air conditioning in summer and heating in winter.

In order to solve the problem of glass energy loss, the industry has developed Low Emissivity Glass, which has become one of the main products in the glass industry today. If the double silver Low-E glass with emissivity of e = 0.04 is selected in the insulating glass, its heat transfer coefficient can reach 1.3~1.1 after being filled with inert gas, which is equivalent to the thermal insulation performance of a 370mm thick brick wall, which can not only increase the lighting area, but also reduce energy consumption. We call this kind of glass with excellent thermal insulation, heat preservation and lighting performance, and effectively reduce energy consumption called energy-saving glass, so what indicators are the key energy-saving indicators of energy-saving glass?

(1) Visible light transmittance TV

For the most basic function of glass windows, "lighting", that is, the ability of glass to transmit visible light, it is measured by the transmission ratio of visible light to TV. The industry standard JGJ151-2008 defines the visible light transmittance as the ratio of the visible light flux of the standard light source to the visible light flux projected onto the glass, doors, windows or glass curtain wall by weighting the human visual function. The greater the visible light transmittance, the better the indoor lighting effect.

(2) Heat transfer coefficient K value (or U value)

For the second major function of glass windows, "heat preservation", that is, the ability to block heat transfer from temperature differences, measured by the heat transfer coefficient K value. The industry standard JGJ151-2008 defines the heat transfer coefficient as the heat passing through doors, windows or glass curtain walls per unit area per unit time when the ambient temperature difference between the two sides is 1K (°C). The smaller the heat transfer coefficient, the better the thermal insulation performance.

(3) The total transmittance of solar infrared heat energy gIR

The third function of glass windows is "heat insulation", that is, the ability of glass to block solar radiant heat, which is measured by the total transmission ratio of solar infrared heat energy gIR. In the latest monogram HB002-2014, gIR is defined as the total solar transmittance in the wavelength range of 780nm~2500nm. The smaller the gIR value, the stronger the ability of the glass to block solar radiant heat.

So what is the total solar transmittance (g-value for short, also known as the solar heat gain coefficient SHGC)? In the industry standard JGJ151-2008, it is called "total sunlight transmittance", which is defined as: the ratio of the solar radiation part that becomes the heat gain of the room through glass doors, windows or glass curtain walls to the solar radiation illuminance projected on glass, doors and windows or glass curtain wall components. The part of solar radiation that becomes indoor heat gain includes: the heat gain transmitted by solar radiation through radiation; The solar radiation is absorbed by the components and then transferred into the room. The g-value characterizes the heat-gaining capacity of the glass, and the higher the g-value, the stronger the heat-gaining.

來源:城市幕墻、新玻網(wǎng)

免責(zé)聲明:本文轉(zhuǎn)自新玻網(wǎng),轉(zhuǎn)載此文章僅為分享知識(shí),如有侵權(quán),請(qǐng)聯(lián)系小編進(jìn)行刪除。






Copyright ? 2022 Foshan Gaoming Zhengxing Electromechanical Co., Ltd. All rights reserved

Design by:ceall.net.cn

欧美一区二区三高清视频| 欧美 国亚洲性色综合区| 精品人妻久久久久久888| 日韩精品无码熟人妻视频 | 男人操女人操到爽的视频| 高清中文字幕在线第一页| 中文字幕久久网| 色偷偷噜噜噜亚洲男人 | 国产精品国产三级国产爱网| 另类亚洲欧美专区第一页| 诱人的奶头bd在线观看| 国产亚洲精品A在线无码麻豆| 乱人伦中文视频在线一级| 久久人妻内射无码一区三区| 用舌头去添高潮无码视频| 黑色丝袜无码中中文字幕| 国产乱子伦一区二区三区| 美女被操逼免费黄片视频| 鸡巴炒小穴出水视频欧美| 风间ゆみの熟女俱乐部| 噜噜噜亚洲色成人网站∨| 亚洲熟妇天堂一区二区三区 | 亚洲老妇女一区二区三区| 国产精品污www在线观看| 国产婷婷久久综合五月欲色| 国产av激情无码久久| 无套和妇女做内谢| 少妇一晚三次一区二区三区| 初小videos第一次摘花| 国产av无码专区亚洲a∨毛片| 欧美性色黄大片a级毛片视频| 色婷婷亚洲婷婷亚洲最大| 国内精品久久久久久无码不卡| 丰满人妻熟妇乱又伦精品软件| 亚洲国产精品久久无人区| 双乳被老汉揉搓a毛片免费观看| 含一整夜 好涨h| 一本狠狠久久五月色丁香| 国产精品美女久久久亚洲| 国产精品久久久久国产三级| 哦┅┅快┅┅用力啊┅┅|