The lack of knowledge on precipitation frequency over ungauged areas introduces a significant source of uncertainty in relevant engineering designs and risk estimation procedures. Radar-based observations offer precipitation information over ungauged areas and thus have gained increasing attention as a potential solution to this problem. However, due to their relative short data records and inherent uncertainty sources, their ability to provide accurate estimates on the frequency of precipitation extremes requires evaluation. This study involves the evaluation of at-site precipitation frequency estimates from NEXRAD Stage IV radar precipitation dataset. We derive precipitation annual maxima series from the 16yrs record (2002-2017) of NEXRAD...
Extreme precipitation is highly variable in space and time. It is therefore important to characteri...
Given the continuous advancement in the retrieval of precipitation from satellites, it is important ...
This remote sensing project compares NEXRAD MPE data with rain gauge data from around the San Antoni...
The establishment of design storm parameters is a critical step in hydrologic design and flood-risk ...
Constructing an accurate, continental, in-situ-based, kilometer-scale, long-term record of the preci...
This is the published version. Copyright 1999 American Geophysical UnionNext Generation Weather Rada...
Radar precipitation estimation is very useful for hydrological and climatological studies. However, ...
The Radar-based Quantitative Precipitation Estimates (QPE) is one of the NEXRAD products that are av...
In Belgium, only rain gauge time series have been used so far to study extreme rainfall at a given l...
Extreme precipitation models are crucial for understanding the characteristics of extreme weather, e...
Intensity–duration–frequency (IDF) curves are widely used to quantify the probability of occurrence ...
Timing and amount of precipitation are principal drivers of most rangeland processes, but the availa...
Rainfall frequency analysis, which is an important tool in hydrologic engineering, has been traditio...
Intensity-duration-frequency (IDF) curves are frequently used for practical derivation of design sto...
Intensity-duration-frequency (IDF) curves are widely used to quantify the probability of occurrence ...
Extreme precipitation is highly variable in space and time. It is therefore important to characteri...
Given the continuous advancement in the retrieval of precipitation from satellites, it is important ...
This remote sensing project compares NEXRAD MPE data with rain gauge data from around the San Antoni...
The establishment of design storm parameters is a critical step in hydrologic design and flood-risk ...
Constructing an accurate, continental, in-situ-based, kilometer-scale, long-term record of the preci...
This is the published version. Copyright 1999 American Geophysical UnionNext Generation Weather Rada...
Radar precipitation estimation is very useful for hydrological and climatological studies. However, ...
The Radar-based Quantitative Precipitation Estimates (QPE) is one of the NEXRAD products that are av...
In Belgium, only rain gauge time series have been used so far to study extreme rainfall at a given l...
Extreme precipitation models are crucial for understanding the characteristics of extreme weather, e...
Intensity–duration–frequency (IDF) curves are widely used to quantify the probability of occurrence ...
Timing and amount of precipitation are principal drivers of most rangeland processes, but the availa...
Rainfall frequency analysis, which is an important tool in hydrologic engineering, has been traditio...
Intensity-duration-frequency (IDF) curves are frequently used for practical derivation of design sto...
Intensity-duration-frequency (IDF) curves are widely used to quantify the probability of occurrence ...
Extreme precipitation is highly variable in space and time. It is therefore important to characteri...
Given the continuous advancement in the retrieval of precipitation from satellites, it is important ...
This remote sensing project compares NEXRAD MPE data with rain gauge data from around the San Antoni...