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Aurora.3/code/ATMOSPHERICS/components/unary/cold_sink.dm
2020-08-17 11:25:09 +02:00

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//TODO: Put this under a common parent type with heaters to cut down on the copypasta
#define FREEZER_PERF_MULT 2.5
/obj/machinery/atmospherics/unary/freezer
name = "gas cooling system"
desc = "Cools gas when connected to pipe network."
desc_info = "Cools down the gas of the pipe it is connected to. It uses massive amounts of electricity while on. \
It can be upgraded by replacing the capacitors, manipulators, and matter bins. It can be deconstructed by screwing the maintenance panel open with a \
screwdriver, and then using a crowbar."
icon = 'icons/obj/sleeper.dmi'
icon_state = "freezer_0"
density = 1
anchored = 1
use_power = 0
idle_power_usage = 5 // 5 Watts for thermostat related circuitry
var/heatsink_temperature = T20C // The constant temperature reservoir into which the freezer pumps heat. Probably the hull of the station or something.
var/internal_volume = 600 // L
var/max_power_rating = 20000 // Power rating when the usage is turned up to 100
var/power_setting = 100
var/set_temperature = T20C // Thermostat
var/cooling = 0
component_types = list(
/obj/item/circuitboard/unary_atmos/cooler,
/obj/item/stock_parts/matter_bin,
/obj/item/stock_parts/capacitor = 2,
/obj/item/stock_parts/manipulator,
/obj/item/stack/cable_coil{amount = 2}
)
/obj/machinery/atmospherics/unary/freezer/Initialize()
initialize_directions = dir
. = ..()
/obj/machinery/atmospherics/unary/freezer/atmos_init()
if(node)
return
var/node_connect = dir
for(var/obj/machinery/atmospherics/target in get_step(src, node_connect))
if(target.initialize_directions & get_dir(target, src))
node = target
break
//copied from pipe construction code since heaters/freezers don't use fittings and weren't doing this check - this all really really needs to be refactored someday.
//check that there are no incompatible pipes/machinery in our own location
for(var/obj/machinery/atmospherics/M in src.loc)
if(M != src && (M.initialize_directions & node_connect) && M.check_connect_types(M,src)) // matches at least one direction on either type of pipe & same connection type
node = null
break
update_icon()
/obj/machinery/atmospherics/unary/freezer/update_icon()
if(node)
if(use_power && cooling)
icon_state = "freezer_1"
else
icon_state = "freezer"
else
icon_state = "freezer_0"
return
/obj/machinery/atmospherics/unary/freezer/attack_ai(mob/user as mob)
ui_interact(user)
/obj/machinery/atmospherics/unary/freezer/attack_hand(mob/user as mob)
ui_interact(user)
/obj/machinery/atmospherics/unary/freezer/ui_interact(mob/user)
var/datum/vueui/ui = SSvueui.get_open_ui(user, src)
if(!ui)
ui = new(user, src, "machinery-atmospherics-freezer", 440, 300, "Gas Cooling System")
ui.auto_update_content = TRUE
ui.open()
/obj/machinery/atmospherics/unary/freezer/vueui_data_change(list/data, mob/user, datum/vueui/ui)
data = list()
data["on"] = use_power ? 1 : 0
data["gasPressure"] = round(air_contents.return_pressure())
data["gasTemperature"] = round(air_contents.temperature)
data["minGasTemperature"] = 0
data["maxGasTemperature"] = round(T20C+500)
data["targetGasTemperature"] = round(set_temperature)
data["powerSetting"] = power_setting
data["gasTemperatureBadTop"] = (T0C - 20)
data["gasTemperatureBadBottom"] = null
data["gasTemperatureAvgTop"] = (T0C - 20)
data["gasTemperatureAvgBottom"] = (T0C - 100)
return data
/obj/machinery/atmospherics/unary/freezer/Topic(href, href_list)
if(..())
return 1
if(href_list["toggleStatus"])
use_power = !use_power
update_icon()
if(href_list["temp"])
var/amount = text2num(href_list["temp"])
if(amount > 0)
set_temperature = min(set_temperature + amount, 1000)
else
set_temperature = max(set_temperature + amount, 0)
if(href_list["setPower"]) //setting power to 0 is redundant anyways
var/new_setting = between(0, text2num(href_list["setPower"]), 100)
set_power_level(new_setting)
add_fingerprint(usr)
/obj/machinery/atmospherics/unary/freezer/machinery_process()
..()
if(stat & (NOPOWER|BROKEN) || !use_power)
cooling = 0
update_icon()
return
if(network && air_contents.temperature > set_temperature)
cooling = 1
var/heat_transfer = max( -air_contents.get_thermal_energy_change(set_temperature - 5), 0 )
//Assume the heat is being pumped into the hull which is fixed at heatsink_temperature
//not /really/ proper thermodynamics but whatever
var/cop = FREEZER_PERF_MULT * air_contents.temperature/heatsink_temperature //heatpump coefficient of performance from thermodynamics -> power used = heat_transfer/cop
heat_transfer = min(heat_transfer, cop * power_rating) //limit heat transfer by available power
var/removed = -air_contents.add_thermal_energy(-heat_transfer) //remove the heat
if(debug)
visible_message("[src]: Removing [removed] W.")
use_power(power_rating)
network.update = 1
else
cooling = 0
update_icon()
//upgrading parts
/obj/machinery/atmospherics/unary/freezer/RefreshParts()
..()
var/cap_rating = 0
var/manip_rating = 0
var/bin_rating = 0
for(var/obj/item/stock_parts/P in component_parts)
if(iscapacitor(P))
cap_rating += P.rating
else if(ismanipulator(P))
manip_rating += P.rating
else if(ismatterbin(P))
bin_rating += P.rating
power_rating = initial(power_rating) * cap_rating / 2 //more powerful
heatsink_temperature = initial(heatsink_temperature) / ((manip_rating + bin_rating) / 2) //more efficient
air_contents.volume = max(initial(internal_volume) - 200, 0) + 200 * bin_rating
set_power_level(power_setting)
/obj/machinery/atmospherics/unary/freezer/proc/set_power_level(var/new_power_setting)
power_setting = new_power_setting
power_rating = max_power_rating * (power_setting/100)
/obj/machinery/atmospherics/unary/freezer/attackby(var/obj/item/O as obj, var/mob/user as mob)
if(default_deconstruction_screwdriver(user, O))
return
if(default_deconstruction_crowbar(user, O))
return
if(default_part_replacement(user, O))
return
..()
/obj/machinery/atmospherics/unary/freezer/examine(mob/user)
..(user)
if(panel_open)
to_chat(user, "The maintenance hatch is open.")