TIER version 1.0: an open-source Topographically InformEd Regression (TIER) model to estimate spatial meteorological fields
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[1] D. Cayan,et al. A spatially comprehensive, hydrometeorological data set for Mexico, the U.S., and Southern Canada 1950–2013 , 2015, Scientific Data.
[2] Gerald N. Day,et al. Extended Streamflow Forecasting Using NWSRFS , 1985 .
[3] B. Majone,et al. Testing the Hydrological Coherence of High‐Resolution Gridded Precipitation and Temperature Data Sets , 2018 .
[4] C. Daly,et al. High‐resolution precipitation mapping in a mountainous watershed: ground truth for evaluating uncertainty in a national precipitation dataset , 2017 .
[5] C. Daly,et al. A knowledge-based approach to the statistical mapping of climate , 2002 .
[6] Henry F. Diaz,et al. Creating a Serially Complete, National Daily Time Series of Temperature and Precipitation for the Western United States , 2000 .
[7] Ronald B. Smith,et al. A Linear Theory of Orographic Precipitation , 2004 .
[8] C. Daly,et al. Physiographically sensitive mapping of climatological temperature and precipitation across the conterminous United States , 2008 .
[9] C. Daly,et al. A Statistical-Topographic Model for Mapping Climatological Precipitation over Mountainous Terrain , 1994 .
[10] Peter E. Thornton,et al. Generating surfaces of daily meteorological variables over large regions of complex terrain , 1997 .
[11] W. C. Spreen,et al. A determination of the effect of topography upon precipitation , 1947 .
[12] Robert B. McKane,et al. High-resolution spatial modeling of daily weather elements for a catchment in the Oregon Cascade Mountains, United States , 2007 .
[13] T. Giambelluca,et al. Methodological Intercomparisons of Station-Based Gridded Meteorological Products: Utility, Limitations, and Paths Forward , 2019, Journal of Hydrometeorology.
[14] J. Houghton. A Model for Orographic Precipitation in the North-Central Great Basin , 1979 .
[15] J. Dozier,et al. High-Elevation Precipitation Patterns: Using Snow Measurements to Assess Daily Gridded Datasets across the Sierra Nevada, California* , 2015 .
[16] F. Pappenberger,et al. Global-scale evaluation of 22 precipitation datasets using gauge observations and hydrological modeling , 2017 .
[17] J. Cecil Alter,et al. NORMAL PRECIPITATION IN UTAH , 1919 .
[18] Kenji Matsuura,et al. Smart Interpolation of Annually Averaged Air Temperature in the United States , 1995 .
[19] M. Clark,et al. Characteristics of the western United States snowpack from snowpack telemetry (SNOTEL) data , 1999 .
[20] M. Clark,et al. Gridded Ensemble Precipitation and Temperature Estimates for the Contiguous United States , 2015 .
[21] George H. Taylor,et al. High-quality spatial climate data sets for the United States and beyond , 2000 .
[22] D. Shepard,et al. Computer Mapping: The SYMAP Interpolation Algorithm , 1984 .
[23] Dmitri Kavetski,et al. Pursuing the method of multiple working hypotheses for hydrological modeling , 2011 .
[24] Christopher Daly,et al. Guidelines for assessing the suitability of spatial climate data sets , 2006 .
[25] D. Cayan,et al. Statistical Downscaling Using Localized Constructed Analogs (LOCA) , 2014 .
[26] D. Shepard. A two-dimensional interpolation function for irregularly-spaced data , 1968, ACM National Conference.
[27] K. Mo,et al. Continental-scale water and energy flux analysis and validation for the North American Land Data Assimilation System project phase 2 (NLDAS-2): 1. Intercomparison and application of model products , 2012 .
[28] Noel A Cressie,et al. Statistics for Spatio-Temporal Data , 2011 .
[29] A. H. Thiessen. PRECIPITATION AVERAGES FOR LARGE AREAS , 1911 .
[30] C. Willmott,et al. CLIMATOLOGICALLY AIDED INTERPOLATION (CAI) OF TERRESTRIAL AIR TEMPERATURE , 1995 .
[31] Russell S. Vose,et al. Comprehensive Automated Quality Assurance of Daily Surface Observations , 2010 .
[32] J. Lundquist,et al. Spatiotemporal patterns of precipitation inferred from streamflow observations across the Sierra Nevada mountain range , 2018 .
[33] Vail P. Schermerhorn. Relations between topography and annual precipitation in western Oregon and Washington , 1967 .
[34] Claude N. Williams,et al. Homogenization of Temperature Series via Pairwise Comparisons , 2009 .
[35] Rafael L. Bras,et al. Optimal estimators of mean areal precipitation in regions of orographic influence , 1982 .
[36] J. Dudhia,et al. Continental-scale convection-permitting modeling of the current and future climate of North America , 2017, Climate Dynamics.
[37] J. Franklin. Predictive vegetation mapping: geographic modelling of biospatial patterns in relation to environmental gradients , 1995 .
[38] Matthew J. Menne,et al. Strategies for evaluating quality assurance procedures , 2008 .
[39] D. Nychka,et al. A Multiresolution Gaussian Process Model for the Analysis of Large Spatial Datasets , 2015 .
[40] P. Jones,et al. An Ensemble Version of the E‐OBS Temperature and Precipitation Data Sets , 2018, Journal of Geophysical Research: Atmospheres.
[41] D. Marks,et al. A comparison of geostatistical procedures for spatial analysis of precipitation in mountainous terrain , 1992 .
[42] M. Clark,et al. Probabilistic Quantitative Precipitation Estimation in Complex Terrain , 2005 .
[43] S. Barnes,et al. A Technique for Maximizing Details in Numerical Weather Map Analysis , 1964 .