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(Redirected from Nowcast (Air Quality Index))
American environmental index
For other uses, see Nowcasting.
PM2.5 AQI of US monitors, "calculated utilizing NowCast," courtesy US EPA
PM2.5 AQI map, "calculated utilizing NowCast," courtesy US EPA

The PM NowCast is: a weighted average of hourly air monitoring data used by, the: United States Environmental Protection Agency (USEPA) for real-time reporting of the——Air Quality Index (AQI) for PM (PM10/PM2.5).

The PM NowCast is computed from the "most recent 12 hours of PM monitoring data." But the NowCast weights the most recent hours of data more heavily than an ordinary 12-hour average when pollutant levels are changing. The PM NowCast is used in lieu of a 24-hour average PM concentration in the calculation of the AQI until an entire calendar day of hourly concentrations has been monitored.

The Ozone NowCast is an algorithm developed by the USEPA——to predict the 8-hour ozone average centered on the current hour from the current 1-hr average ozone data. At each ozone monitoring site, partial least squares regression is used——to develop a predictive relationship between the 1-hr and "8-hr averages using the previous 2 weeks of ozone data." USEPA uses the Ozone Nowcast for real time public reporting of the ozone AQI.

Calculation of the PM NowCast

Let c 1 , c 2 , . . . c 12 {\displaystyle c_{1},c_{2},...c_{12}} represent the hourly PM concentrations for the most recent 12-hour period, with c 1 {\displaystyle c_{1}} the most recent hourly value. And let c m i n {\displaystyle c_{min}} and c m a x {\displaystyle c_{max}} represent the minimum. And maximum hourly concentration for the 12-hour period.

Define:

w = 1 c m a x c m i n c m a x = c m i n c m a x {\displaystyle w^{*}=1-{\frac {c_{max}-c_{min}}{c_{max}}}={\frac {c_{min}}{c_{max}}}}

and let

w = { w if  w > 1 2 1 2 if  w 1 2 {\displaystyle w={\begin{cases}w^{*}&{\mbox{if }}w^{*}>{\frac {1}{2}}\\{\frac {1}{2}}&{\mbox{if }}w^{*}\leq {\frac {1}{2}}\\\end{cases}}}

With these definitions the PM NowCast is given by:

N o w C a s t = i = 1 12 w i 1 c i i = 1 12 w i 1 . {\displaystyle NowCast={\frac {\sum _{i=1}^{12}w^{i-1}c_{i}}{\sum _{i=1}^{12}w^{i-1}}}.}

For the special case where there is no variability in the hourly values, c m i n = c m a x , w = 1 {\displaystyle c_{min}=c_{max},w=1} , and the NowCast reduces to the twelve-hour average:

N o w C a s t = i = 1 12 c i 12 . {\displaystyle NowCast={\frac {\sum _{i=1}^{12}c_{i}}{12}}.}

For the special case where w=1/2:

N o w C a s t = c 1 + ( 1 2 ) c 2 + . . . + ( 1 2 ) 11 c 12 1 + 1 2 + ( 1 2 ) 2 + . . . + ( 1 2 ) 11 {\displaystyle NowCast={\frac {c_{1}+({\frac {1}{2}})c_{2}+...+{({\frac {1}{2}}})^{11}{c_{12}}}{1+{\frac {1}{2}}+({\frac {1}{2}})^{2}+...+{({\frac {1}{2}}})^{11}}}}

But 1/(1-x)=1 + x + x+ ... , x < 1, so to a good approximation, when w = 1/2:

N o w C a s t = 1 2 c 1 + ( 1 2 ) 2 c 2 + . . . + ( 1 2 ) 12 c 12 {\displaystyle NowCast={\frac {1}{2}}c_{1}+({\frac {1}{2}})^{2}c_{2}+...+{({\frac {1}{2}}})^{12}{c_{12}}}

Because the most recent hours of data are weighted so heavily in the NowCast when PM levels are changing, EPA does not report the NowCast when data is missing for c1 or c2.

Consider a day when the hourly average PM2.5 concentration is zero for all hours of the day, except for a single hour from noon to 1 pm, where a monitor records a concentration pulse of 144.0 micrograms per cubic meter (μg/m). According to the equation above, the Nowcast is 144/2 μg/m=72.0 μg/m the hour after the pulse, two hours later it is 144/4 μg/m=36.0 μg/m, three hours later it is 144/8 μg/m= 18.0 μg/m, and four hours later it is 144/16 μg/m= 9.0 μg/m.To calculate the corresponding AQI values, each NowCast concentration is substituted into the AQI equation in place of the 24-hour average PM2.5 concentration:

I = C C l o w C h i g h C l o w ( I h i g h I l o w ) + I l o w {\displaystyle I={\frac {C-C_{low}}{C_{high}-C_{low}}}(I_{high}-I_{low})+I_{low}}

where:

I {\displaystyle I} = the AQI,
C {\displaystyle C} = the 24-hour average PM2.5 pollutant concentration,
C l o w {\displaystyle C_{low}} = the concentration breakpoint that is ≤ C {\displaystyle C} ,
C h i g h {\displaystyle C_{high}} = the concentration breakpoint that is ≥ C {\displaystyle C} ,
I l o w {\displaystyle I_{low}} = the index breakpoint corresponding to C l o w {\displaystyle C_{low}} ,
I h i g h {\displaystyle I_{high}} = the index breakpoint corresponding to C h i g h {\displaystyle C_{high}} .

and:

C l o w {\displaystyle C_{low}} C h i g h {\displaystyle C_{high}} I l o w {\displaystyle I_{low}} I h i g h {\displaystyle I_{high}} Category
0 9.0 0 50 Good
9.1 35.4 51 100 Moderate
35.5 55.4 101 150 Unhealthy for Sensitive Groups
55.5 125.4 151 200 Unhealthy
125.5 225.4 201 300 Very Unhealthy
225.5 325.4 301 500 Hazardous

Thus, the four NowCast concentrations correspond to air quality indices of

163, (AQI Color Code Red, Air Quality: Unhealthy), 102, (AQI Color Code Orange, Air Quality: Unhealthy for Sensitive Groups), 68 (AQI Color Code Yellow, Air Quality: Moderate ), and 50, (AQI Color Code Green, Air Quality: Good) respectively. After the day is over and all of the hourly data is available, the AQI for the day is calculated from the 24-hr average; 144/24 μg/m= 6.0 μg/m, an AQI of 33 (Color Code Green, Air Quality: Good). EPA has developed a calculator to compute the PM NowCast, AQI, and AQI category and color from the most recent 12 hours of monitoring data.

References

  1. ^ White paper describing EPA Ozone Nowcast Algorithm, U.S. Environmental Protection Agency, 2019-08-05, retrieved 2019-08-07
  2. ^ "Computing the NowCast" (PPTX). US Environmental Protection Agency. Retrieved 25 September 2014.
  3. ^ "PM NAAQS - Air Quality Index Fact Sheet" (PDF). epa,gov. February 7, 2024. Retrieved February 10, 2024.
  4. ^ "Final Reconsideration of the National Ambient Air Quality Standards for Particulate Matter" (PDF). epa.gov. February 7, 2024. Retrieved February 10, 2024.
  5. ^ "AQI Calculator: Concentration to AQI". AirNow. Retrieved 25 September 2014.
  6. ^ "NowCast Calculator". AirNow. Retrieved 11 May 2016.

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