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Adding anaerobic digester cost (watertap-org#1433)
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* anaerobic digester cost

* Update docs/technical_reference/costing/anaerobic_digester.rst

Co-authored-by: MarcusHolly <96305519+MarcusHolly@users.noreply.github.com>

* Update docs/technical_reference/costing/anaerobic_digester.rst

Co-authored-by: MarcusHolly <96305519+MarcusHolly@users.noreply.github.com>

* Update docs/technical_reference/costing/anaerobic_digester.rst

Co-authored-by: MarcusHolly <96305519+MarcusHolly@users.noreply.github.com>

* Update docs/technical_reference/costing/anaerobic_digester.rst

Co-authored-by: MarcusHolly <96305519+MarcusHolly@users.noreply.github.com>

* Update docs/technical_reference/costing/anaerobic_digester.rst

Co-authored-by: luohezhiming <98901358+luohezhiming@users.noreply.github.com>

---------

Co-authored-by: MarcusHolly <96305519+MarcusHolly@users.noreply.github.com>
Co-authored-by: luohezhiming <98901358+luohezhiming@users.noreply.github.com>
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3 people authored Jun 21, 2024
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36 changes: 14 additions & 22 deletions docs/technical_reference/costing/anaerobic_digester.rst
Original file line number Diff line number Diff line change
Expand Up @@ -9,45 +9,34 @@ The following parameters are constructed for the unit on the FlowsheetCostingBlo
.. csv-table::
:header: "Description", "Symbol", "Parameter Name", "Default Value", "Units"

"description", ":math:`Symbol_{example}`", "``parameter_name``", "1", ":math:`\text{dimensionless}`"
"Capital cost A parameter :math:`^1`", ":math:`A`", "``capital_a_parameter``", "19.3552312e6", ":math:`\text{USD}_{2012}`"
"Capital cost B parameter :math:`^1`", ":math:`B`", "``capital_b_parameter``", "0.6", ":math:`\text{dimensionless}`"
"Reference flow :math:`^1`", ":math:`F_r`", "``reference_flow``", "911.054", ":math:`m^3/h`"

Costing Method Variables
++++++++++++++++++++++++

The following variables are constructed on the unit block (e.g., m.fs.unit.costing) when applying the `cost_anaerobic_digester` costing method in the ``watertap_costing_package``:

.. csv-table::
:header: "Description", "Symbol", "Variable Name", "Index", "Units"

"description", ":math:`Symbol_{example}`", "``variable_name``", "[t]", ":math:`\text{dimensionless}`"
There are no costing method variables unique to the anaerobic digester.

Capital Cost Calculations
+++++++++++++++++++++++++

Describe capital costs..keep it concise where possible

.. math::
C_{cap,tot} = C_{cap,example1}+C_{cap,example2}+C_{cap,other}
Capital cost is dependent upon the unit's volumetric flowrate, :math:`F`, as shown in the equation below.

.. math::
C_{cap,example1} = fill in equation for each component in total capex equation
C_{cap,tot} = A * (F/F_r)^{B}
Operating Cost Calculations
+++++++++++++++++++++++++++

Describe operating/maintenance costs..keep it concise where possible
Electricity :math:`C_{elec}` is a variable operating cost based on the energy intensity :math:`E` of the unit process
(electricity consumption for the anaerobic digester), electricity price :math:`P`, electricity flow :math:`Q`, and the plant
utilization factor :math:`f_{util}`. The annual electricity costs are calculated as:

.. math::
C_{op,tot} = C_{op,example1}+C_{op,example2}+C_{op,other}
.. math::
C_{op,example1} = fill in equation for each component in total opex equation
C_{op, tot} = C_{elec} = E Q f_{util} P
Code Documentation
------------------
Expand All @@ -56,4 +45,7 @@ Code Documentation

References
----------
Aim to include at least one reference in most cases, but delete this section if no references used for cost relationships/default values
[1] Eberle, Annika, Irina Tsiryapkina, Steve Peterson, Laura Vimmerstedt, Dylan Hettinger,
and Daniel Inman. 2020. An Overview of the Waste-to-Energy System Simulation
(WESyS) Model. Golden, CO: National Renewable Energy Laboratory.
NREL/TP-6A20-77166. https://www.nrel.gov/docs/fy21osti/77166.pdf.

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