<p><strong>Figure 3.</strong> (a) Time series of the observed (black line) and modeled (red line) 2-m air temperature (° C) for the urban stations during the 10-day EWD period in July 2009. (b) As in (a) but for the rural stations.</p> <p><strong>Abstract</strong></p> <p>Evaluation of built environment energy demand is necessary in light of global projections of urban expansion. Of particular concern are rapidly expanding urban areas in environments where consumption requirements for cooling are excessive. Here, we simulate urban air conditioning (AC) electric consumption for several extreme heat events during summertime over a semiarid metropolitan area with the Weather Research and Forecasting (WRF) model coupled to a multilayer building...
This paper presents a hypothetical and comparative performance of a 5 ton air conditioner (AC) opera...
AbstractGiven increasing utility of numerical models to examine urban impacts on meteorology and cli...
Urban heat island (UHI) and the increased frequency of heatwaves due to climate change reduce therma...
<p><strong>Figure 2.</strong> Observed (black line) monthly mean electric load (MW) covering the SRP...
<p><strong>Figure 4.</strong> Ratio of AC consumption to total electric consumption averaged for the...
<p><strong>Figure 6.</strong> (a) Non-dimensional AC consumption profiles for the 10-day EWD period ...
<p><b>Table 1.</b> Periods simulated with the WRF model. A spin-up of 7 h was con...
abstract: Evaluation of built environment energy demand is necessary in light of global projections ...
<p><strong>Figure 1.</strong> (a) The four two-way nested domains considered in the runs. (Numerical...
<p><b>Table 2.</b> Statistical representation for the <em>T</em><sub>2 m</sub> (°...
Abstract This article investigates the effect of air conditioning (AC) systems on air temperature an...
Heatwaves are growing in intensity, duration, and frequency. Such extreme events can adversely affec...
© 2015 Melissa JamesWith world electricity consumption for air conditioning predicted to increase te...
This study investigates the effect of anthropogenic heat emissions from air conditioning systems (AC...
The urban heat island effect is a phenomenon wherein the dark, hard surfaces prevalent in heavily-de...
This paper presents a hypothetical and comparative performance of a 5 ton air conditioner (AC) opera...
AbstractGiven increasing utility of numerical models to examine urban impacts on meteorology and cli...
Urban heat island (UHI) and the increased frequency of heatwaves due to climate change reduce therma...
<p><strong>Figure 2.</strong> Observed (black line) monthly mean electric load (MW) covering the SRP...
<p><strong>Figure 4.</strong> Ratio of AC consumption to total electric consumption averaged for the...
<p><strong>Figure 6.</strong> (a) Non-dimensional AC consumption profiles for the 10-day EWD period ...
<p><b>Table 1.</b> Periods simulated with the WRF model. A spin-up of 7 h was con...
abstract: Evaluation of built environment energy demand is necessary in light of global projections ...
<p><strong>Figure 1.</strong> (a) The four two-way nested domains considered in the runs. (Numerical...
<p><b>Table 2.</b> Statistical representation for the <em>T</em><sub>2 m</sub> (°...
Abstract This article investigates the effect of air conditioning (AC) systems on air temperature an...
Heatwaves are growing in intensity, duration, and frequency. Such extreme events can adversely affec...
© 2015 Melissa JamesWith world electricity consumption for air conditioning predicted to increase te...
This study investigates the effect of anthropogenic heat emissions from air conditioning systems (AC...
The urban heat island effect is a phenomenon wherein the dark, hard surfaces prevalent in heavily-de...
This paper presents a hypothetical and comparative performance of a 5 ton air conditioner (AC) opera...
AbstractGiven increasing utility of numerical models to examine urban impacts on meteorology and cli...
Urban heat island (UHI) and the increased frequency of heatwaves due to climate change reduce therma...