World's Best Scientists 2026 revealed!

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Engineering and Technology

D-Index
76
Citations
23545
World Ranking
696
National Ranking
239

Environmental Sciences

D-Index
79
Citations
24410
World Ranking
1009
National Ranking
439

Research.com Recognitions

  • 1992 - Member of the National Academy of Engineering For development of analytical and numerical methods to characterize and predict groundwater flow and contaminant transport in complex geological systems.

Overview

Shlomo P. Neuman is affiliated with the University of Arizona in the United States and conducts research primarily in the field of Environmental Science. Their work spans several subfields, including Environmental Engineering, Geochemistry and Petrology, Water Science and Technology, and Economics and Econometrics.

Neuman's research addresses a range of topics related to groundwater and hydrology. These topics include:

  • Groundwater flow and contamination studies
  • Groundwater and Isotope Geochemistry
  • Hydrology and Watershed Management Studies
  • Complex Systems and Time Series Analysis

The scientist has contributed to published literature across different venues. Two major publication venues are:

  • Perspectives of Earth and Space Scientists
  • Oxford Research Encyclopedia of Environmental Science

Among Neuman's recent papers are:

  • "Twenty Lessons Drawn From My Subsurface Hydrology Career," published in 2020 in Perspectives of Earth and Space Scientists
  • "Statistical Scaling of Randomly Fluctuating Hierarchical Variables," published in 2024 in Oxford Research Encyclopedia of Environmental Science

Frequent collaborations include work with the following co-authors:

  • Mònica Riva
  • Alberto Guadagnini
  • Martina Siena
  • Chiara Recalcati

In recognition of their contributions, Neuman was named a Member of the National Academy of Engineering in 1992 for the development of analytical and numerical methods used to characterize and predict groundwater flow and contaminant transport in complex geological systems.

Best Publications

  • Estimation of Aquifer Parameters Under Transient and Steady State Conditions: 1. Maximum Likelihood Method Incorporating Prior Information

    Jesus Carrera;Shlomo P. Neuman

  • Trends, prospects and challenges in quantifying flow and transport through fractured rocks

    Shlomo P. Neuman

  • Universal scaling of hydraulic conductivities and dispersivities in geologic media

    Shlomo P. Neuman

  • Estimation of Aquifer Parameters Under Transient and Steady State Conditions: 2. Uniqueness, Stability, and Solution Algorithms

    Jesus Carrera;Shlomo P. Neuman

  • Theory of flow in unconfined aquifers considering delayed response of the water table

    Shlomo P. Neuman

  • Maximum likelihood Bayesian averaging of uncertain model predictions

    S. P. Neuman

  • SATURATED-UNSATURATED SEEPAGE BY FINITE ELEMENTS

    Shlomo P. Neuman

  • Analysis of Pumping Test Data From Anisotropic Unconfined Aquifers Considering Delayed Gravity Response

    Shlomo P. Neuman

  • Effect of partial penetration on flow in unconfined aquifers considering delayed gravity response

    Shlomo P. Neuman

  • Field test of a modified numerical model for water uptake by root systems

    R. A. Feddes;E. Bresler;S. P. Neuman

  • Perspective on theories of non-Fickian transport in heterogeneous media

    Shlomo P. Neuman;Daniel M. Tartakovsky

  • Stochastic theory of field‐scale fickian dispersion in anisotropic porous media

    Shlomo P. Neuman;C. Larrabee Winter;Charles M. Newman

  • Theoretical derivation of Darcy's law

    S. P. Neuman

  • Estimation of Aquifer Parameters Under Transient and Steady State Conditions: 3. Application to Synthetic and Field Data

    Jesus Carrera;Shlomo P. Neuman

  • A comparison of seven geostatistically based inverse approaches to estimate transmissivities for modeling advective transport by groundwater flow

    D. A. Zimmerman;G. de Marsily;G. de Marsily;C. A. Gotway;M. G. Marietta

  • Prediction of steady state flow in nonuniform geologic media by conditional moments: Exact nonlocal formalism, effective conductivities, and weak approximation

    Shlomo P. Neuman;Shlomo Orr

  • Theory of Flow in a Confined Two Aquifer System

    Shlomo P. Neuman;Paul A. Witherspoon

  • Calibration of distributed parameter groundwater flow models viewed as a multiple‐objective decision process under uncertainty

    Shlomo P. Neuman

  • Generalized scaling of permeabilities: Validation and effect of support scale

    Shlomo P. Neuman

  • Eulerian‐Lagrangian Theory of transport in space‐time nonstationary velocity fields: Exact nonlocal formalism by conditional moments and weak approximation

    Shlomo P. Neuman

  • Subsurface flow and transport : a stochastic approach

    Gedeon Dagan;Shlomo P. Neuman

  • A statistical approach to the inverse problem of aquifer hydrology: 1. Theory

    Shlomo P. Neuman;Sidney Yakowitz

Frequent Co-Authors

Alberto Guadagnini
Alberto Guadagnini Polytechnic University of Milan
Ming Ye
Ming Ye Florida State University
Jesús Carrera
Jesús Carrera Spanish National Research Council
Walter A. Illman
Walter A. Illman University of Waterloo
Dongxiao Zhang
Dongxiao Zhang Southern University of Science and Technology
Gedeon Dagan
Gedeon Dagan Tel Aviv University
Reinder A. Feddes
Reinder A. Feddes Wageningen University & Research
Marcel G. Schaap
Marcel G. Schaap University of Arizona
Graham E. Fogg
Graham E. Fogg University of California, Davis
Paul A. Hsieh
Paul A. Hsieh United States Geological Survey

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