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Preprints

Filtering by Subject: Physical Sciences and Mathematics

Physics, Ecology, Mathematics and Engineering of the Negawatt Economy: A Formal Architecture for Verified Energy Conservation

Nigel Grier

Published: 2026-09-26
Subjects: Engineering, Physical Sciences and Mathematics

The contribution is a formal issuance architecture for verified energy conservation. The Negawatt (NWT) is the registry denomination of that conservation: one NWT equals one megawatt-hour (1 MWh) accepted under Proof of Conservation. In this paper, energy conservation means measured and verified avoided energy use relative to an adjusted baseline; it does not mean the First-Law [...]

Hidden periodicity in LiDAR point-count rasters

Alejandro Urias

Published: 2026-09-26
Subjects: Computer Sciences, Earth Sciences, Geophysics and Seismology, Numerical Analysis and Scientific Computing, Other Earth Sciences, Physical Sciences and Mathematics

LAS files store coordinates on a fixed step, usually 1 cm, and counting points in raster cells can add a regular pattern that comes from the storage and counting grids rather than the ground. We ask how a user can test whether a repeating pattern in a point-count raster was introduced this way. We model three mechanisms (grid mismatch, boundary rounding and uneven filling of stored positions), [...]

Transient Events: A Rapid-Response, Multi-Platform Observing Strategy for Detecting and Understanding Abrupt Change in Aquatic Ecosystems

Susanne Elizabeth Craig, Heather Benway, Joaquim Goes, et al.

Published: 2026-09-25
Subjects: Biochemistry, Biodiversity, Biogeochemistry, Earth Sciences, Marine Biology, Oceanography, Oceanography and Atmospheric Sciences and Meteorology, Physical Sciences and Mathematics

Extremes, not average conditions, increasingly govern the state of aquatic ecosystems and the risks they carry for people. Events far outside normal variability can reshape ecosystem structure and function within hours to weeks, and both the observational record and climate projections indicate such extremes are growing more frequent, more intense, and longer lasting. Whether an extreme becomes a [...]

Carbon and the Elements of Life: Integrated Observing and Modeling of Marine Biological Carbon Cycles

Susanne Elizabeth Craig, Joaquim Goes, Hannah Joy-Warren, et al.

Published: 2026-09-25
Subjects: Atmospheric Sciences, Biodiversity, Biogeochemistry, Biology, Climate, Earth Sciences, Environmental Sciences, Oceanography, Oceanography and Atmospheric Sciences and Meteorology, Physical Sciences and Mathematics

The global ocean acts as a massive reservoir for carbon dioxide, establishing ocean biogeochemistry as a primary driver of global carbon distributions [1-3]. This dynamic system is mediated by living organisms that cycle carbon and other elements through the ocean interior and air-sea interface, and is already being altered by warming, acidification, deoxygenation, and shifting nutrient supply [...]

Rare deglacial-aged corals point to weaker El Niño in a colder world

Robert Domeyko, Judson Partin, Yuko Okumura, et al.

Published: 2026-09-24
Subjects: Physical Sciences and Mathematics

Extreme El Niño events, the warm phase of the El Niño–Southern Oscillation (ENSO), have increased in frequency since the late 20th century, intensifying concerns about ENSO’s response to a changing climate and its far-reaching impacts on global weather. Yet climate model projections of future ENSO behaviour remain divergent, and simulations under past glacial boundary conditions likewise lack [...]

A brief history of equifinality in hydrological modelling: from GST to GLUE to ML

Keith Beven, Yang Eric Hong

Published: 2026-09-24
Subjects: Education, Engineering, Physical Sciences and Mathematics

AbstractEquifinality has shaped hydrological modelling for five decades. The equifinality thesis rejects the concept of an “optimal” model in favour of the possibility that different model structures or parameter sets can provide similarly acceptable representations of a system when uncertainties in the forcing and evaluation data are considered, especially when those data are subject to [...]

Deep seismo-volcanic tremors constrain the magma supply from the mantle

Weifan Lu, Nikolai M. Shapiro, Oleg Melnik, et al.

Published: 2026-09-24
Subjects: Earth Sciences, Geology, Geophysics and Seismology, Physical Sciences and Mathematics, Volcanology

Volcanic eruptions are driven by magma supplied from the mantle, yet deep magmatic flux remains poorly constrained. Here we propose to quantify it based on deep seismic tremors. We adopt a model of tremor generation by rapid growth of gas bubbles in response to magma decompression and establish a physical relationship between the cumulative seismic moment and the volume of the ascending magma. By [...]

Subvolcanic magma pathways in transtensional regimes; AMS and structural evidence from SE Iceland

Vincent Twomey, William McCarthy, Craig Magee, et al.

Published: 2026-09-24
Subjects: Physical Sciences and Mathematics

This study presents an integrated analysis of magmatic and tectonic strain data recorded within and around the Reyðarártindur intrusion, southeast Iceland, combining anisotropy of magnetic susceptibility (AMS) with UAV-based fracture mapping. Thermomagnetic experiments and petrography confirm AMS fabrics capture magmatic-state strain, defining a consistent NNE–SSW magnetic lineation with [...]

A Probabilistic Catastrophe Risk Model for Site-Specific Tropical Cyclone Loss Quantification

Kunal J. Rathore

Published: 2026-09-24
Subjects: Computational Engineering, Earth Sciences, Engineering, Environmental Sciences, Physical Sciences and Mathematics

Quantifying the financial risk posed by landfalling tropical cyclones requires statistical methods that extend beyond the limits of a short and non-stationary historical observational record. This paper presents the mathematical formulation of an open, modular probabilistic catastrophe risk model for site-specific tropical cyclone loss estimation, structured around the four components used [...]

Ambient Noise Surface-Wave Polarization in Anisotropic Media: Theory, Measurement, and Interpretation

Xiongwei Liu, Michael H Ritzwoller

Published: 2026-09-24
Subjects: Physical Sciences and Mathematics

We develop an adiabatic theory and practical methodology for measuring quasi-Rayleigh and quasi-Love polarization from the complete ambient noise cross-correlation tensor. The formulation allows the polarization parameters at both stations of a pair to be estimated jointly and, under sufficiently adiabatic propagation, interpreted in terms of local anisotropic structure at those locations. A new [...]

Hydrogeology and Water Quality of the Unconsolidated Aquifer System in the Lower Fall Creek Valley, Tompkins County, New York

Josh Woda, Brandon Graham, William Kappel, et al.

Published: 2026-09-24
Subjects: Earth Sciences, Physical Sciences and Mathematics

The U.S. Geological Survey, in cooperation with Tompkins County and the Town of Dryden, conducted a hydrogeologic investigation of the lower Fall Creek unconsolidated aquifer system in Tompkins County, New York. This study is part of an ongoing effort to characterize major valley-fill aquifers in the region to support sustainable groundwater management. The lower Fall Creek valley, encompassing [...]

New mapping along Ishtar Terra margins: use and limits of Magellan SAR data for testing Venus crustal plateau formation models

Hiu Ching Jupiter Hansen, Alex Webb, Joseph R. Michalski, et al.

Published: 2026-09-24
Subjects: Physical Sciences and Mathematics

The origins of crustal plateaus on Venus are poorly understood. Several formation models have been proposed, including four previously explored models: downwelling, upwelling, pulsating continents, and bolide impact models; as well as a waning heat-pipe model. Key predictions which vary across models include surface deformation, marginal deformation, and the tessera-plain onlapping relationships. [...]

Three-Dimensional Numerical Modeling of Glacier Flow and U-Shaped Valley Evolution in Subtropical Taiwan

Hsueh-Chen Lee

Published: 2026-09-24
Subjects: Earth Sciences, Geomorphology, Glaciology, Physical Sciences and Mathematics

Glacial erosion plays a critical role in shaping alpine topography,yet the coupled effects of ice deformation, basal sliding, andbedrock erosion on millennial-scale valley morphodynamics remainchallenging to quantify. This study presents three-dimensionalsimulations of glacier dynamics and bed evolution in Xue MountainGlacial Cirque No.~2, Taiwan, over an effective glaciation timescaleof 9~ka. [...]

P-T-t-d history of the Greater Himalayan Sequence in the Zanskar Shear Zone, NW India

Emma N. Beck, Mary L. Leech, Matthew Coble, et al.

Published: 2026-09-23
Subjects: Earth Sciences, Geochemistry, Geology, Physical Sciences and Mathematics, Tectonics and Structure

We present a synthesis of pressure-temperature-time-deformation (P-T-t-d) conditions that track the evolution of the Greater Himalaya Sequence (GHS) exhumed along the Zanskar Shear Zone (ZSZ), the western arm of the South Tibetan Detachment and that spans the entirety of the Himalayan range. The dominant mineralogy is Qz + Kfs + Pl + Bt + Grt + Ilm + Sil(Fi) ± Ms ± Ky ± St. P-T paths constructed [...]

Urban Sprawl and Traffic-Related Air Pollution in Greater Gaborone: A Spatial Analysis of the Land Use–Transport–Environment Relationship

Keone Kelobonye, Chenesani Sithole, Orateng Amos

Published: 2026-09-23
Subjects: Engineering, Physical Sciences and Mathematics

Rapid urban sprawl in many Sub-Saharan African cities has significantly reshaped urban mobility patterns, resulting in longer commuting distances, increased private vehicle dependence, and growing pressure on major transport corridors. These trends have important implications for environmental quality, urban sustainability, and climate resilience. This paper investigates the spatial relationship [...]

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