LH

(redirected from latent heat)
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AcronymDefinition
LHLeft Hand
LHLithuania
LHLufthansa (Airline Code)
LHLa Hora (Guatemalan newspaper)
LHLuteinizing Hormone (same as ISCH)
LHLong-Haul
LHLecture Hall (various schools)
LHLauryn Hill (musician)
LHLower Half
LHLove Hurts
LHLight House
LHLove Hina (Anime)
LHLaguna Hills (California city)
LHLiquid Hydrogen
LHLatent Heat
LHLeutinizing Hormone
LHLeipzig/Halle (Airport, Germany)
LHLocal Host (networking)
LHLifehouse (band)
LHLabor-Hour (Contract)
LHLaurel Hill (North Carolina city)
LHLiving Hell
LHLearned Helplessness (psychology)
LHLearning Handicapped
LHLightly Hinged (philatelic auction term)
LHLow Head
LHLost Horizon
LHLight Helicopter
LHLoad High (MS-DOS config.sys statement)
LHLysyl Hydroxylase
LHLine Haul
LHLernout & Hauspie (speech recognition software firm)
LHLoad Halfword (IBM)
LHLine Hunting
LHLink Header (TMN)
LHLionHearts (Ragnarok Online gaming clan)
LHLashon Hara
LHLast Horizon (online gaming)
LHLanding Helicopter
LHLebanese Hezbollah
LHl'Hôpital's Rule (calculus)
LHLink Handler
LHLeading Hands
LHLondon Hydro
LHLoud House (Nintendo chat room)
LHLima-Hamilton Corporation (locomotive manufacturer)
LHLazyhuff (algorithm for calculating minimum-redundancy codes)
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References in periodicals archive ?
The humidified oxidizing air makes the dew point of flue gas increased, making it possible for the return water to recover more latent heat. The flue gas is ultimately discharged into the atmosphere with a relative humidity of 56% and the thermal efficiency of the system reaches 101.4%, which is much higher than that of the condensing boilers.
"Numerical and Experimental Investigation of a Fixed Bed Latent Heat Storage System during Charging Processes." Australian Journal of Mechanical Engineering.
At this point, [q.sub.n] is close to zero, or zero for [T.sub.c] = [T.sub.room] (black solid curve), until the latent heat storage capacity becomes full.
Sagara, "Latent heat storage materials and systems: a review," International Journal of Green Energy, vol.
As evapotranspiration is one of the key factors that has a major impact on the hydrological cycle and the evapotranspiration from canopy interception is nearly 10-30% of total precipitation [40, 41], it is reasonable to consider the effect of evapotranspiration on latent heat flux bias.
A field experiment was carried out in 3 different naturally ventilated agricultural structures, two screenhouses, and a greenhouse to study the suitability of a simple turbulent transport technique, namely, the flux variance, in estimating sensible and latent heat fluxes.
The change of latent heat is also affected by other factors such as inlet air humidity, water flow rate, heat exchanger orientation and heat exchanger geometry.
Latent heat storage in a Phase Change Material (PCM) is very much impressive because of its high storage density with small temperature fluctuate.