Java StarLogo 2.1 English `turtle` ;TURTLE - Versão 5 - 29.3.06 breeds [coelhos raposas] turtles-own [vitalidade cons-amt conta idade morte] to vida-coelhos setcons-amt (min densidade (apetite-coe * random 5)) setdensidade (max 0 (densidade - cons-amt)) seth random 360 jump 1 setvitalidade max 0 (vitalidade + cons-amt - 10) setvitalidade min vitalidade 100 if (vitalidade > 100 - cap-repr-coe) and (idade > 2) [setvitalidade max 0 (vitalidade - 5) ;min hatch [setvitalidade 10 setidade 0 setconta 0]] ceifador-coelhos end to ceifador-coelhos if morte = 1 [die] ifelse vitalidade < 1 [setconta (conta + 1) if conta > 3 [die]] [setconta 0] if idade > vida-max-coe [die] end to vida-raposas if breed = raposas [if ( count-coelhos-here > 0 and ( ((random 99) < apetite-rap) or (vitalidade < 40) ) ) [setmorte-of one-of-coelhos-here 1 setvitalidade vitalidade + 100] ; pred-life-gain setvitalidade (vitalidade - 10) ; (random 20) / setvitalidade min vitalidade 150 ceifador-raposas if (vitalidade > 100 - cap-repr-rap) and (idade > 5) [setvitalidade max (vitalidade - 20) 0 hatch [setvitalidade 20 setidade 0 setconta 0]] mover-raposas] end to ceifador-raposas if idade > vida-max-rap [die] ifelse vitalidade < 1 [setconta conta + 1 if conta > 3 [die]] [setconta 0] end to mover-raposas seth random 360 ifelse count-coelhos-here > 0 [fd .1] [fd random 20] end `observer` ;OBSERVER - Versão 5 - 29.3.06 ; globals [systime] patches-own [densidade] to começarup plotid 4 end to ini stopParar-Reiniciarbutton stopParar-Reiniciar-Graficobutton plotid 4 clearplot setplot-title "" ; setsystime 0 ca ask-patches [if (random 10) < 1 [setdensidade 100]] repeat 10 [cresce-relva diffuse densidade .3 cr] plot-setup cria-coelhos cria-raposas end to Parar-Reiniciar cresce-relva diffuse densidade .05 cr avança ask-coelhos [vida-coelhos] cr ask-raposas [vida-raposas] end to cresce-relva ;grass grow by increasing its densidade ask-patches [if (densidade > .1) [setdensidade min 99 (densidade + (sol-rega / 10))]] cr end to cr ;scales grass color based on densidade ask-patches [ifelse densidade > 0 [scale-pc green densidade 100 0] [setpc 48]] end to cria-coelhos create-coelhos num-coelhos ask-coelhos [setxy (random screen-height) (random screen-width) setshape rabbit-shape setvitalidade (random 100) setidade (random 50) setconta 0] end to cria-raposas create-raposas num-raposas ask-raposas [setxy (random screen-height) (random screen-width) setshape fox-shape setvitalidade (random 100) setidade (random 50) setconta 0] end to avança ;a time-step ask-coelhos [vida-coelhos] cr ask-raposas [vida-raposas] ask-turtles [setidade idade + 1] ; setsystime systime + 1 end to plot-setup pp1 ppreset setppc 7 pp2 ppreset setppc green pp3 ppreset setppc 25 setplot-xrange 0 25 setplot-yrange 0 500 setplot-title "Quantidades em função do tempo" end to Parar-Reiniciar-Grafico every 1.8 [ ;only graph every 1.8 seconds ;this causes the graph to be smoother (the averaging makes it somewhat discrete) pp1 ppd plot count-coelhos ;pp2 ppd plot sum-of-patches [densidade / 200] ;a slower way of graphing approximately the same thing ;we're graphing a scaled distribution of the patch colors pp2 ppd plot (10 * (count-pc (green - 5)) + 9 * (count-pc (green - 4)) + 8 * (count-pc (green - 3)) + 7 * (count-pc (green - 2)) + 6 * (count-pc (green - 1)) + 5 * (count-pc green) + 4 * (count-pc (green + 1)) + 3 * (count-pc (green + 2)) + 2 * (count-pc (green + 3)) + (count-pc (green + 4))) / 20 pp3 ppd plot count-raposas] end to start startParar-Reiniciarbutton startParar-Reiniciar-Graficobutton end ; to empty ; end ;**************************************** `information` For use with the Adventures in Modeling book, by Vanessa Colella, Eric Klopfer, and Mitchel Resnick published by Teachers College Press, 2001. For more information, see Challenge 10: Predator, Prey, Grass This project models an ecosystem consisting of growing grass, grasshoppers that eat the grass, and predators that eat the grasshoppers. The grasshoppers and predators are implemented as breeds of turtles, while the grass is implemented as patches. If grass is present on a patch (with its density indicated by shades of green) it grows according to the rate specified in the solar-gain slider. Patches that have no grass at all are considered desertified and are shown in yellow. The only way grass can grow in the desertified areas is if it spreads to these patches through diffusion (one algorithm for modeling the re-seeding of the desert patches). The initial number of grasshoppers is controlled with the "ghs-num" slider. Each grasshopper is created with an energy level. The grasshoppers move randomly around, using up a small amount of energy for each step. If a grasshopper lands on a green patch, it consumes the grass at a rate determined by the "ghs-eat-rate" slider. This rate determines both the amount of grass that the grasshopper eats and the amount of energy the grasshopper gains. If a grasshopper is over age 2 and has accumulated enough energy (as determined by the "ghs-birth-thresh" slider), then it will hatch a new grasshopper. If a grasshopper reaches the age shown on the "ghs-max-age" slider or runs out of energy, then it will die. The "pred-num" slider sets the initial number of predators. These predators also have an energy level that decreases slightly as they move randomly around. If a predator encounters a grasshopper, then it will eat it and gain the amount of energy indicated on the "pred-life-gain" slider. Once a predator accumulates enough energy (as shown on the "pred-birth-thresh" slider), it will hatch a new predator. A predator dies when it runs out of energy or reaches the age shown on the "pred-max-age" slider. Try running the model with the default parameters. What happens to the populations over time? Can you control the degree of population fluctuation? How? What seems to determine the degree of fluctuation? Try freezing all but one of the parameters and experimenting with different values for the remaining parameter. What happens to the populations of the three species as you change the parameter? `interface` SLCanvas top-left 1 404 SLMonitor top-left 286 60 width-height 72 36 name "Número" list-to-run "count-coelhos" digits 0 delay 0.5 monitor-number 1 show-name? true whichip 20 onewhichip 21 SLTextWidget top-left 118 178 width-height 40 25 textwidth 30 linenums 1 words "Relva " drawBorder false textwidget-number 3 SLMonitor top-left 283 271 width-height 72 36 name "Número" list-to-run "count-raposas" digits 0 delay 0.5 monitor-number 3 show-name? true whichip 22 onewhichip 23 SLTextWidget top-left 168 67 width-height 42 25 textwidth 38 linenums 1 words "Coelhos" drawBorder false textwidget-number 1 SLTextWidget top-left 168 288 width-height 43 25 textwidth 39 linenums 1 words "Raposas" drawBorder false textwidget-number 2 SLLegend top-left 418 707 width-height 62 16 name "Relva" shape 3 color -11947776 show-border? false legend-number 1 toolTip-text "A intensidade do verde traduz a densidade da relva" SLLegend top-left 540 707 width-height 74 16 name "Raposas" shape 2 color -11947776 show-border? false legend-number 3 toolTip-text "Estas raposas só comem coelhos" SLLegend top-left 483 707 width-height 73 16 name "Coelhos" shape 1 color -11947776 show-border? false legend-number 2 toolTip-text "Estes coelhos só comem relva" SLSlider top-left 190 32 width-height 115 25 name "Vida máxima" variable "vida-max-coe" min-value 0 max-value 250 current-value 41 slider-number 2 show-name? true SLSlider top-left 11 28 width-height 169 25 name "Número inicial de coelhos" variable "num-coelhos" min-value 0 max-value 2000 current-value 276 slider-number 1 show-name? true SLSlider top-left 138 157 width-height 86 25 name "Sol + Rega" variable "sol-rega" min-value 1 max-value 30 current-value 30 slider-number 0 show-name? true SLSlider top-left 192 248 width-height 115 25 name "Vida máxima" variable "vida-max-rap" min-value 0 max-value 200 current-value 63 slider-number 6 show-name? true SLSlider top-left 13 231 width-height 155 25 name "Número inicial de raposas" variable "num-raposas" min-value 0 max-value 99 current-value 23 slider-number 5 show-name? true SLLineWidget top-left 411 4 width-height 689 181 id 4 order 4 type 1 title "Quantidades em função do tempo" delay-string "0.5" ymin 4.975000000000001 ymax 495.025 xmin 0.24875000000000003 xmax 24.75125 xlabel "" ylabel "" grid false connected true autoscale true autoscale-x true autoscale-y true location 93 567 wizard-on false SLSlider top-left 255 254 width-height 107 25 name "Apetite" variable "apetite-rap" min-value 0 max-value 100 current-value 31 slider-number 8 show-name? true SLSlider top-left 225 237 width-height 152 25 name "Capacidade/reprodução" variable "cap-repr-rap" min-value 0 max-value 90 current-value 15 slider-number 7 show-name? true SLSlider top-left 223 13 width-height 155 25 name "Capacidade/reprodução" variable "cap-repr-coe" min-value 0 max-value 100 current-value 83 slider-number 3 show-name? true SLSlider top-left 256 37 width-height 107 25 name "Apetite" variable "apetite-coe" min-value 0 max-value 20 current-value 5 slider-number 4 show-name? true SLButton turtle-or-observer? observer top-left 91 172 width-height 55 30 name "Começar" line-to-run "start" forever? false button-number 7 show-name? true whichip 16 SLButton turtle-or-observer? observer top-left 328 153 width-height 99 30 name "Parar-Reiniciarbutton" line-to-run "Parar-Reiniciar" forever? true button-number 3 show-name? false whichip 17 SLButton turtle-or-observer? observer top-left 367 139 width-height 137 30 name "Parar-Reiniciar-Graficobutton" line-to-run "Parar-Reiniciar-Grafico" forever? true button-number 6 show-name? false whichip 18 SLButton turtle-or-observer? observer top-left 51 177 width-height 40 30 name "Ini" line-to-run "ini" forever? false button-number 2 show-name? true whichip 19 `turtle shapes` H4sIAAAAAAAAAO3c+Y4cVxnG4UNY4kAg7FtYzL4GvIy3sM0NcA8BKQgkJBAJEn/W 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