空气源热泵的“10项全能” |
添加时间:2021/5/12 14:42:11 浏览次数: |
空气源热泵的“10项全能”!只要需要热能,就是热泵的战场!
The "10 omnipotence" of the air source heat pump. As long as the heat is needed, it is the battlefield of the heat pump!
作为替代燃煤的最佳方式之一,空气源热泵因为节能、环保、安全等特性受到了更多青睐。“煤改电”这把火燃烧了整个北方地区,也点燃了整个热泵行业的激情。民用采暖和热水领域、商业供热制冷和热水领域、农业生产领域、工农业烘干领域、工业高温特种应用领域等,正在掀起一场彻底的、全面的热源革命!
As one of the best ways to replace coal, air source heat pump has
received more and more attention due to its characteristics of energy
saving, environmental protection and safety. "Coal to electricity" this
fire burned the entire northern region, but also ignited the enthusiasm
of the whole heat pump industry. Civil heating and hot water field,
commercial heating and cooling and hot water field, agricultural
production field, industrial and agricultural drying field, industrial
high temperature special application field, and so on, are set off a
thorough, comprehensive heat source revolution!
一、户式采暖
One, household heating
“煤改电”不是简单使用电热锅炉、蓄热式电暖气、电热膜、电热缆等电热装置。这些直接电热的方式,看似满足了供热需求,实际却是典型的“高能低用”,转换效率不足40%,约60%的能源在电热转换中被白白浪费。大规模推广的话,反而增加了燃煤消耗,进而加剧污染排放。“煤改电”绝不等于“煤改电热”。
"Coal to electricity" is not simply the use of electric boilers,
regenerative electric heating, electric heating film, electric heating
cable and other heating devices. These direct electric heating methods
seem to meet the heating demand, but it is actually a typical "high
energy and low use". The conversion efficiency is less than 40%, and
about 60% of the energy is wasted in the electric heating conversion. On
the other hand, large-scale expansion will increase coal consumption
and increase pollution emissions. "Coal modification" is not equal to
"coal electric heating".
宜电则电,北方地区可采用电动空气源热泵。利用电力作为驱动力做功,从室外空气中取热,把热量提至适合采暖的温度,再释放到室内。由此,消耗1度电可产生3度甚至更多热量,效率远高于直接电热方式。
Electric power should be applied to the north, and electric air
source heat pump can be used in the north. Using the power as the
driving force to do the work, the heat is taken from the outdoor air,
and the heat is raised to the temperature suitable for heating, and then
released to the room. Thus, consuming 1 degrees of electricity can
produce 3 degrees or even more heat, and the efficiency is much higher
than that of direct electric heating. |
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