CRiSP1.6 Theory & Calibration Manual: Table of Contents INDEXTOCPREVNEXT

Table of Contents

I. Introduction

I.1 - General Description

I.1.1 - CRiSP.1 Submodels

II. Theory

II.1 - Model Computation Diagram

Reservoir Passage
Ecological Submodels

II.2 - Flows

II.2.1 - Overview of Flow Computation
II.2.2 - Monte Carlo Flow Calculation
Hydroregulation Models
Flow Modulation
Monte Carlo Flow Modulator Validation
Flow Loss
Headwater Computation
Downstream Propagation
II.2.3 - Scenario Mode Flow Generation
Headwater Modulation
Reservoir Volume and Flow
Theory for Parameter Estimation
Maximum Unregulated Flows
Storage Reservoirs Parameter Values
II.2.4 - Flow / Velocity / Elevation
Pool Volume
Water Velocity
Flow / Velocity Calibration
II.2.5 - Temperature

II.3 - Fish Migration

II.3.1 - Theoretical Framework
Probability Density Function
Passage Probability
II.3.2 - Migration Models
Implementing the Travel Time Algorithm

II.4 - Reservoir Survival

II.4.1 - Theoretical Framework
II.4.2 - Predation Mortality
General Model
Zone Specific Formulations of the Predation Model
Predator Abundance
Predator Removal Adjustments
Predator Density / Reservoir Volume Interaction
II.4.3 - Supersaturation Mortality
Theory
Parameter Determination
II.4.4 - Simple Mortality

II.5 - Total Dissolved Gas

II.5.1 - Introduction
II.5.2 - Gas Production Equations
Theory
TDG Empirical Models
TDG Mechanistic Models
II.5.3 - Tailrace Dynamics
Introduction
Separate Flows
Mixing
Entrainment
II.5.4 - Reservoir Dissolved Gas Distributions
Theory
Parameter Determination
II.5.5 - Other Gas Inputs
Total Dissolved Gas in the Tailrace
Total Dissolved Gas at a Confluence
Total Dissolved Gas Dissipation

II.6 - Dam Passage

II.6.1 - Forebay Delay
Dam Delay Model
II.6.2 - Spill
Flow Archive Spill
Spill from Spill Schedule Tool
Spill Caps
Spill Efficiency
II.6.3 - Fish Guidance Efficiency (FGE)
Constant FGE
Age Dependent FGE
Parameter Determination
Multiple Powerhouses
Fish Passage Efficiency (FPE)
Dam Passage Survival
II.6.4 - Transport Parameters
Transportation schedule
Transportation Separation
II.6.5 - Transport Merit Function

II.7 - Stochastic Processes

II.7.1 - Stochastic Parameter Probability Density
II.7.2 - Stochastic Parameters
II.7.3 - Scales of Stochastic Variability

III. Calibration

III.1 - Calibration Overview

III.1.1 - Parameter Determination and Calibration Techniques
Goodness-of-fit
III.1.2 - Parameter Determination and Calibration Status
Status by Type
Status by Submodel

III.2 - Total Dissolved Gas Calibration

WES Linear and Exponential Curves
Exponential Empirical Equation
Hyperbolic Empirical Equation
GasSpill 1 and GasSpill 2 Mechanistic Equations
K Entrainment

III.3 - Predation Rate Parameter Calibration

Survival Data
Survival Calibration Process
III.3.1 - Parameter Determination and Calibration
Predator Densities
Predator Activity Coefficient Determination
Temperature Response
III.3.2 - Predator Density - Temperature Response Interaction
Density Data Revised
III.3.3 - Results for Snake River Stocks
III.3.4 - Results for Upper Columbia River Stocks
Calibration strategy for fall chinook
Predator Density
Caveat

III.4 - Calibration of Fish Travel Time Algorithms

Travel Time Calibration Process
Estimating Velocity Variance (Vvar)
Smolt Start/Stop Date
Migration Rate Variance
Travel Time Data
Construction of Cohorts
III.4.1 - Results for Snake River Stocks
III.4.2 - Results for Upper Columbia Stocks

IV. Sensitivity Analysis

IV.1 - Description

IV.1.1 - Methods

IV.2 - Results

IV.3 - Summary

Analyzed Range and Observed Range

V. Parameter Definitions

VI. References

VI.1 - By Author

VI.2 - By Subject

VII. Glossaries

VII.1 - Glossary

VII.2 - Token Glossary


CRiSP1.6 Theory & Calibration Manual: Table of Contents INDEXTOCPREVNEXT

Please direct questions or comments to:
web@cbr.washington.edu
Columbia Basin Research,
School of Aquatic & Fishery Sciences,
University of Washington