Package: kitagawa 3.1.2

kitagawa: Spectral Response of Water Wells to Harmonic Strain and Pressure Signals

Provides tools to calculate the theoretical hydrodynamic response of an aquifer undergoing harmonic straining or pressurization, or analyze measured responses. There are two classes of models here, designed for use with confined aquifers: (1) for sealed wells, based on the model of Kitagawa et al (2011, <doi:10.1029/2010JB007794>), and (2) for open wells, based on the models of Cooper et al (1965, <doi:10.1029/JZ070i016p03915>), Hsieh et al (1987, <doi:10.1029/WR023i010p01824>), Rojstaczer (1988, <doi:10.1029/JB093iB11p13619>), Liu et al (1989, <doi:10.1029/JB094iB07p09453>), and Wang et al (2018, <doi:10.1029/2018WR022793>). Wang's solution is a special exception which allows for leakage out of the aquifer (semi-confined); it is equivalent to Hsieh's model when there is no leakage (the confined case). These models treat strain (or aquifer head) as an input to the physical system, and fluid-pressure (or water height) as the output. The applicable frequency band of these models is characteristic of seismic waves, atmospheric pressure fluctuations, and solid earth tides.

Authors:Andrew J. Barbour [aut, cre], Jonathan Kennel [ctb]

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NEWS

# Install 'kitagawa' in R:
install.packages('kitagawa', repos = c('https://abarbour.r-universe.dev', 'https://cloud.r-project.org'))

Peer review:

Bug tracker:https://github.com/abarbour/kitagawa/issues

On CRAN:

harmonic-strainsseismic-wavesseismometerstrainstrainmeterwater-levelwater-well

18 exports 3 stars 1.18 score 8 dependencies 27 scripts 244 downloads

Last updated 8 months agofrom:550dd1b96d. Checks:OK: 5 NOTE: 2. Indexed: yes.

TargetResultDate
Doc / VignettesOKAug 27 2024
R-4.5-winNOTEAug 27 2024
R-4.5-linuxNOTEAug 27 2024
R-4.4-winOKAug 27 2024
R-4.4-macOKAug 27 2024
R-4.3-winOKAug 27 2024
R-4.3-macOKAug 27 2024

Exports:alpha_constantsconstantscross_spectrumdata.frame.owrspdata.frame.wrspis.owrspis.wrspkitplotlog_tickslog10_tickslog2_tickslogsmoologticksomega_constantsomega_normopen_well_responsesensing_volumewell_response

Dependencies:BesselgmpkelvinpsdRColorBrewerRcppRcppArmadilloRmpfr

Comparison of response functions

Rendered fromResponseModels-knitr.Rnwusingknitr::knitron Aug 27 2024.

Last update: 2024-01-27
Started: 2020-06-17

Cross Spectrum Computation

Rendered fromTohoku.Rmdusingknitr::rmarkdownon Aug 27 2024.

Last update: 2024-01-27
Started: 2015-09-20

Readme and manuals

Help Manual

Help pageTopics
Calculate any constants depending on effective stress coefficient alphaalpha_constants alpha_constants.default
Calculate the cross-spectrum of two timeseriescross_spectrum cross_spectrum.default cross_spectrum.mts
Access to constants used by defaultconstants kitagawa-constants
General utility functions.in0to1 .nullchk is.owrsp is.wrsp kitagawa-utilities
Logarithmic smoothing with loesslogsmoo
Add proper logarithm ticks to a plot axis.log10_ticks log2_ticks logticks log_ticks
Calculate any constants that depend on angular frequency omegaomega_constants omega_constants.default
Dimensionless frequency from diffusivity and depthomega_norm
Spectral response for an open wellopen_well_response open_well_response.default
Generic methods for objects with class ''owrsp''.as.data.frame.owrsp data.frame.owrsp lines.owrsp owrsp owrsp-methods plot.owrsp points.owrsp print.owrsp print.summary.owrsp summary.owrsp
Calculate volume of fluids in the sensing region of the borehole.sensing_volume
Spectral response for a sealed wellwell_response well_response.default
Generic methods for objects with class ''wrsp''.as.data.frame.wrsp data.frame.wrsp kitplot kitplot.wrsp lines.wrsp plot.wrsp points.wrsp print.summary.wrsp print.wrsp summary.wrsp wrsp wrsp-methods