Izindlu — ukusebenza kwesakhiwo sehhovisi Imodeli ephilayo

Wena ungumphathi wezikhungo wesakhiwo sehhovisi esinezitezi ezinhlanu esinesakhiwo sikakhonkolo esinzima, uhlelo lokupholisa phezu kophahla, i-heat pump kanye nesikhungo esiyinhloko sokuphatha umoya. Njalo ngemizuzu engu-15 imodeli ibala ukushisa okugeleza phakathi komoya wangaphandle, umoya wegumbi, izindawo nomthamo wesakhiwo (indlela yamahora ye-ISO 13790), lokho uhlelo okufanele luhlinzeke ngakho, kagesi osetshenzisiwe, ukuthi i-CO₂ eningi kangakanani abantu abayiphefumulela ngaphandle nokuthi bahlala kahle kangakanani (PMV/PPD, ISO 7730). Ukulingisa kwemfundo kuphela — izibalo zentengo nezesakhiwo ziyizibonelo, hhayi iseluleko sobunjiniyela noma semali.

Okuzofunda

Isilingisi

Isikhathi 0 min
00:00 · Izinga lokushisa lomoya wegumbi 21.9 °C · Ukuzwa ukushisa (PMV) -0.84 · Abalindeleke ukungajabuli (PPD) 20% · I-CO₂ yangaphakathi 450 ppm · Isidingo sesakhiwo (imizuzu engu-15) 0 kW · Isidingo sesiqongo sokukhokhisa 0 kW · Abantu esakhiweni 0■Uhlelo luvaliweCOP 0.0 · ⏱ 00:001F↓2F↓3F↓4F↓5F↓Iphoyinti lokupholisa 24.0 °CIphoyinti lokufudumeza 21.0 °CIsikhathi sokuqala sohlelo 7.0 hUmoya wangaphandle 0 L/sOngashintshi (ukugeleza kwemiklamo)🌡 16.9 °C → 21.9 °CIzinga lokushisa lendawo 21.9 °CCO₂ 450 ppmIsidingo sesakhiwo (imizuzu engu-15) 0 kW│ = Isidingo sesiqongo sokukhokhisa 0 kWKagesi osetshenzisiwe 0 kWhUkuzwa ukushisa (PMV) -0.84Abalindeleke ukungajabuli (PPD) 20%Abantu esakhiweni 0
  • Kuhlezi kahle (PMV −0.5…+0.5)
  • Kupholile kakhulu (PMV ngaphansi kuka-−0.5)
  • Kufudumele kakhulu (PMV +0.5…+1)
  • Kushisa (PMV ngaphezu kuka-+1)
  • Ukupholisa
  • Ukufudumeza
  • Cishe abantu abangu-12

Izilawuli

Izinga lokushisa lomoya wegumbi uhlelo oluphola lifike kulo ngesikhathi kunabantu. Lehlise ngaphambi kokuba abantu bafike ukuze uphelise isakhiwo kusengaphambili; likhuphule ngesikhathi sesiqongo sentengo.

Izinga lokushisa lomoya wegumbi eligcinwa yi-heat pump ngesikhathi kunabantu. Lihlala liphansi ngokungenani ngo-1 °C kunephoyinti lokupholisa.

Ihora elikuwashi lapho imodi enabantu iqala khona (abasebenzi bafika kusuka ku-07:30, ukungenisa umoya kusuka ku-08:00, kume ngo-18:00). Ngaphambi kuka-08:00 ama-damper omoya wangaphandle ahlala evaliwe, ngakho uhlelo luvele lufudumeze noma lupholise isakhiwo. Ngaphandle kwemodi enabantu isakhiwo siyashintshashintsha phakathi kuka-15 no-30 °C. Umyalo wokuqala uyabambeka: uma uhlelo seluqalile ngalolo suku, ukushintsha lokhu akwenzi lutho kuze kube ngemva kuka-18:00.

Ongashintshi = ukugeleza kwemiklamo kwabantu abangu-250 (2,125 L/s). Ulawulwa isidingo = 2.5 L/s ngomuntu ngamunye okhona + 0.3 L/s nge-m² ngayinye. I-purge = ama-100 % omoya wangaphandle (6,000 L/s) — i-CO₂ ephansi kakhulu, izindleko eziphakeme kakhulu zokufudumeza noma zokupholisa.

Uma umoya wangaphandle upholile kunegumbi futhi kudingeka ukupholisa, ngenisa omningi wawo (kuze kufike ku-6,000 L/s) esikhundleni sokusebenzisa i-compressor.

Ukhawula ukupholisa nokufudumeza kule ngxenye yomthamo. Unciphisa isiqongo sikagesi, kodwa igumbi liyaphambuka uma umthwalo ungaphezulu.

Izikhombisi

Isidingo sesiqongo sokukhokhisa
0kW
kuvamile
Abalindeleke ukungajabuli (PPD)
20%
isixwayiso
I-CO₂ yangaphakathi
450ppm
kuvamile
Isidingo sesakhiwo (imizuzu engu-15)
0kW
kuvamile
Ukuzwa ukushisa (PMV)-0.84
Izinga lokushisa lomoya wegumbi21.9 °C
Izinga lokushisa lokusebenza21.9 °C
Izinga lokushisa lendawo21.9 °C
Izinga lokushisa lesakhiwo22.0 °C
Izinga lokushisa langaphandle16.9 °C
Kagesi osetshenzisiwe0 kWh
Abantu esakhiweni0
Umoya wangaphandle0 L/s
Ukupholisa okuhlinzekiwe0 kW
Ukufudumeza okuhlinzekiwe0 kW
I-COP yohlelo0.00
Iphoyinti elingafinyelelwanga ngo0.0 K

Isitayela

Isidingo sesiqongo sokukhokhisa: — kW4000

Izimo eziphuthumayo

Izinga 1 · Isixuku somcimbi ngosuku olubandayo

Kuyilanga elibandayo entwasahlobo (cishe 0–6 °C). Ngo-13:00 bafika izivakashi ezingaba ngu-400 enkundleni esakhiweni bese zihamba ngo-17:00 — isakhiwo sizoba nabantu abangaba ngu-600 esikhundleni sika-210. Gcina i-CO₂ yangaphakathi ku-1,000 ppm noma ngaphansi usuku lonke lomsebenzi, ngaphandle kokumosha amandla noma ukunyusa isiqongo sesidingo. Ukungenisa umoya kusekugelezeni kwemiklamo okungashintshi.

  • I-CO₂ yangaphakathi ≤ 1,000 ppm usuku lonke lomsebenzi
  • Kagesi osetshenzisiwe ≤ 1,110 kWh
  • Isidingo asikaze sidlule ku-120 kW

Izinga 2 · Ekuseni ngoMsombuluko ngemva kwempelasonto ebandayo

NgoMsombuluko, phakathi kwamabili, ububanda obungu-−7 °C ngokwesilinganiso. Impelasonto yonke isakhiwo sigcinwe ku-setback yaso engu-15 °C, ngakho ukwakheka kukakhonkolo kungaba ngu-14 °C. Abasebenzi bafika kusuka ku-07:30. Uhlelo lwehlelwe ukuthi luqale ngo-07:00 njengokujwayelekile. Yenza isakhiwo sihlale kahle kusukela ku-08:00 (PPD ≤ 10 %) ugcine isiqongo sesidingo sasekuseni nenkokhelo yamandla ilawulekile.

  • I-PPD ≤ 10 % kusuka ku-08:00 kuya ku-12:00
  • Isidingo asikaze sidlule ku-195 kW
  • Kagesi osetshenzisiwe ≤ 1,760 kWh ngo-14:00

Izinga 3 · Isiqongo sasehlobo nenkokhelo yesidingo

Usuku lokushisa okukhulu: 24 °C ekuseni kakhulu, 36 °C ntambama, ilanga eliqinile. Inkokhelo yesidingo yentengo inqunywa yisidingo semizuzu engu-15 esiphakeme kakhulu phakathi kuka-13:00 no-17:00. Gcina leso siqongo ku-148 kW noma ngaphansi ngenkathi abantu behlala kahle (i-PPD emaphakathi ≤ 9.5 %, ingakaze idlule ku-15 %) futhi kagesi wosuku uhlala eduze nalokho obungabe ukusebenzisa noma kunjalo. Uhlelo luqala ngo-07:00 ngephoyinti elingu-24 °C.

  • Isidingo ≤ 148 kW ngesikhathi sika-13:00–17:00
  • I-PPD emaphakathi ≤ 9.5 % emahoreni omsebenzi
  • I-PPD ayikaze idlule ku-15 %
  • Kagesi osetshenzisiwe ≤ 1,920 kWh

Isisekelo — imodeli engemuva kwezinombolo

Wonke ubudlelwano isilingisi esibusebenzisayo, nomthombo wabo. Izinto ezihlala zingashintshi ezimakwe njengokuthathelwa yizilinganiso zesibonelo.

Isakhiwo njengenethiwekhi encane yokushisa: umoya wegumbi nezindawo zangaphakathi azigcini lutho, kodwa ukwakheka kukakhonkolo kuyagcina. Ukushisa kugeleza ngesixhumanisi ngasinye ngokulingana nomehluko wezinga lokushisa.
air: H_ve(θo − θa) + H_is(θs − θa) + Φ_ia + Φ_HC = 0; surface: H_is(θa − θs) + H_w(θo − θs) + H_ms(θm − θs) + Φ_st = 0; mass: C_m·dθm/dt = H_ms(θs − θm) + H_em(θo − θm) + Φ_m[1][2]
Amanani ajwayelekile esakhiwo esinzima: ukwakheka kugcina u-260 kJ kukelvin ngayinye ku-m² ngayinye yaphansi futhi kuxhumeke ngokuqinile ezindaweni zegumbi. Ingxenye yokushisa kwangaphakathi iya ngqo emoyeni, okusele nelanga kuya ezindaweni nasemthamweni.
C_m = 260 000·A_f J/K, A_m = 3.0·A_f, A_tot = 4.5·A_f, H_is = 3.45·A_tot, H_ms = 9.1·A_m (W/K); Φ_ia = 0.5·Φ_int, Φ_m = (A_m/A_tot)(0.5·Φ_int + Φ_sol)[1][2]
Imitha ekhubikhi ngayinye ngomzuzwana yomoya wangaphandle ithwala u-1.2 kW kukelvin ngayinye yomehluko phakathi kwangaphakathi nangaphandle.
H_ve = ρc·(Q_oa + Q_inf), ρc = 1200 J/(m³K)[1]
Imodeli yenduduzo kaFanger ilinganisa ukushisa umuntu akwenzayo nalokho akulahlekelwa yikho ngokudlulisa, imisebe, umjuluko nokuphefumula. I-PMV 0 isesimeni esimaphakathi; ±0.5 yibhande lenduduzo elejwayelekile, lapho cishe ama-10 % esengajabulile.
PMV = (0.303·e^(−0.036M) + 0.028)·[(M − W) − heat losses(θa, θ_r, v, p_a, I_cl)], θ_r ≈ θs; PPD = 100 − 95·exp(−0.03353·PMV⁴ − 0.2179·PMV²)[3][4]
Inqubo yezinga lokungenisa umoya emahhovisi: ingxenye eyodwa ngomuntu, ingxenye eyodwa ngendawo yaphansi. Ukulawula isidingo kulandela abantu abakhona ngempela.
V_bz = R_p·N + R_a·A = 2.5 L/s·N + 0.3 L/s·m²·A; fixed = V_bz(design 250 people) = 2,125 L/s; DCV = V_bz(N present); purge = 100 % outdoor air (6 m³/s, the AHU limit)[5]
I-CO₂ esakhiweni esixutshwe kahle: abantu bayengeza, umoya wangaphandle uyayehlisa. Izinga liya ku-C_out + N·G/Q ngesikhathi esingashintshi V/Q — cishe ihora nengxenye ekugelezeni kwemiklamo.
V·dC/dt = Q(C_out − C) + N·G, G = 0.0048 L/s; C_ss = C_out + N·G/Q, τ = V/Q[6][5][7]
Ukushisa kwangaphakathi: abantu, amalambu nempahla yehhovisi; ilanga elingena ngamafasitela lifinyelela esiqongweni ekuqaleni kwebunga.
Φ_int = 75 W·N + lights 7 W/m² + plugs 10 W/m²·(0.25 + 0.75·N/250); Φ_sol = 100 kW·sin(π(h − 6)/13)·cloud[8]Isimo esicatshangelwayo: usayizi wesakhiwo, igobolondo, imithamo yohlelo, ukuminyana kokwenyuka kokushisa, ingxenye yeCarnot, amandla efeni, amashejuli nesimo sezulu kuyizinombolo zesibonelo zehhovisi elijwayelekile; ubudlelwano bokulingana kokushisa, induduzo, ukungenisa umoya ne-CO₂ yilezo ezishicilelwe.
I-chiller isebenza kanzima kakhulu uma kushisa ngaphandle, i-heat pump uma kubanda — kokubili kwenziwe imodeli njengengxenye engashintshi yokusebenza okuphelele (iCarnot).
COP_cool = 0.45·T_e/(T_c − T_e), T_e = 5 °C, T_c = θo + 12 K; COP_heat = 0.45·T_c/(T_c − T_e), T_c = 45 °C, T_e = θo − 8 K[9]Isimo esicatshangelwayo: usayizi wesakhiwo, igobolondo, imithamo yohlelo, ukuminyana kokwenyuka kokushisa, ingxenye yeCarnot, amandla efeni, amashejuli nesimo sezulu kuyizinombolo zesibonelo zehhovisi elijwayelekile; ubudlelwano bokulingana kokushisa, induduzo, ukungenisa umoya ne-CO₂ yilezo ezishicilelwe.
Imitha iqopha amandla amaphakathi emizuzu engu-15 ngayinye; inkokhelo yesidingo ikhokhisa eyodwa ephakeme kakhulu, ngakho ikota yehora eyodwa embi igcina inqume inkokhelo.
P = Q_cool/COP_cool + Q_heat/COP_heat + fans (6 kW + 1.5 kW per m³/s outdoor air) + lights + plugs; billing demand = max over 15-min intervals of P[11]Isimo esicatshangelwayo: usayizi wesakhiwo, igobolondo, imithamo yohlelo, ukuminyana kokwenyuka kokushisa, ingxenye yeCarnot, amandla efeni, amashejuli nesimo sezulu kuyizinombolo zesibonelo zehhovisi elijwayelekile; ubudlelwano bokulingana kokushisa, induduzo, ukungenisa umoya ne-CO₂ yilezo ezishicilelwe.
Ukupholisa kusengaphambili kugcina 'ubanda' kukhonkolo ebusuku, lapho i-chiller isebenza kahle futhi isidingo siphansi; ntambama isakhiwo esipholile siyamunca ukushisa uhlelo oluyophoqeleka ukukususa ngenye indlela.
cool the mass before the peak (θm ↓), then raise the setpoint: H_ms(θs − θm) absorbs part of the afternoon gain instead of the plant[10]
Ukuqala okuhle kakhulu: lapho isakhiwo nesimo sezulu sibanda kakhulu, ukululama ku-setback kuthatha isikhathi eside, ngakho uhlelo kufanele luqale kusenesikhathi ngokufanayo.
recovery time after setback grows with (θ_set − θm) and with colder weather; plant start = occupancy − recovery time[12][1]
Ezinye izinto ezingaguquki zokusebenza ezisetshenziswa yimodeli.
5,000 m² office, 3 m storeys · windows 800 m² at U 1.8 (H_w 1,440 W/K), opaque envelope 1,000 W/K, infiltration 0.1 ACH · cooling capacity 350 kW, heat pump 300 kW (thermal) · unoccupied limits 15/30 °C · occupancy 07:30–18:30, attendance ~ N(85 %, 5 %) · outdoor temperature cosine + N(0, 0.8 K) hourly · RH 50 %, 0.1 m/s, 1.2 metIsimo esicatshangelwayo: usayizi wesakhiwo, igobolondo, imithamo yohlelo, ukuminyana kokwenyuka kokushisa, ingxenye yeCarnot, amandla efeni, amashejuli nesimo sezulu kuyizinombolo zesibonelo zehhovisi elijwayelekile; ubudlelwano bokulingana kokushisa, induduzo, ukungenisa umoya ne-CO₂ yilezo ezishicilelwe.

Ukungahleliwe: i-generator ye-mulberry32 enembewu; ukusabalalisa okusetshenzisiwe — uniform, exponential (inverse CDF), normal (Box–Muller), Poisson (Knuth). Imbewu iyabonisa futhi ingabelwana.

Imithombo

  1. ISO 13790:2008 — Energy performance of buildings — Calculation of energy use for space heating and cooling (simple hourly method, 5R1C network, Annex C; Table 12 mass classes) — International Organization for Standardization, 2008
  2. Modelica Buildings Library — Buildings.ThermalZones.ISO13790 (Zone5R1C: h_is = 3.45, h_ms = 9.1 W/m²K, gain split; mass classes, e.g. Data.Heavy: 260 000 J/(K·m²), mass area factor 3.0) — Lawrence Berkeley National Laboratory
  3. ISO 7730:2005 — Ergonomics of the thermal environment — Analytical determination and interpretation of thermal comfort using calculation of the PMV and PPD indices (Annex D program, Table D.1 check values) — International Organization for Standardization, 2005
  4. ANSI/ASHRAE Standard 55 — Thermal Environmental Conditions for Human Occupancy (PMV −0.5…+0.5 comfort zone, PPD < 10 %) — ASHRAE, 2020
  5. ANSI/ASHRAE Standard 62.1 — Ventilation and Acceptable Indoor Air Quality (Table 6-1, office space: R_p = 5 cfm (2.5 L/s) per person, R_a = 0.06 cfm/ft² (0.3 L/s·m²), 5 people / 1000 ft²; demand-controlled ventilation) — ASHRAE, 2022
  6. A. Persily, L. de Jonge — Carbon dioxide generation rates for building occupants (office occupants ≈ 0.0048 L/s per person; steady-state ΔC = G/Q) — Indoor Air 27(5):868–879, 2017
  7. 실내공기질 관리법 시행규칙 별표 2 — 실내공기질 유지기준 (이산화탄소 1,000 ppm 이하) — 대한민국 환경부 (국가법령정보센터)
  8. ASHRAE Handbook — Fundamentals, Chapter 18 Nonresidential Cooling and Heating Load Calculations (Table 1: moderately active office work, sensible ≈ 75 W per person) — ASHRAE, 2021
  9. Y. A. Çengel, M. A. Boles — Thermodynamics: An Engineering Approach (reversed Carnot cycle: COP_R = T_L/(T_H − T_L), COP_HP = T_H/(T_H − T_L)) — McGraw-Hill, 9th ed., 2019
  10. J. E. Braun — Load Control Using Building Thermal Mass (pre-cooling and setpoint adjustment to shift and reduce peak cooling demand) — ASME Journal of Solar Energy Engineering 125(3):292–301, 2003
  11. J. McLaren, S. Mullendore — Identifying Potential Markets for Behind-the-Meter Battery Energy Storage: A Survey of U.S. Demand Charges (demand charge on the highest metered interval demand, kW) — NREL / Clean Energy Group, NREL/BR-6A20-68963, 2017
  12. J. E. Seem, P. R. Armstrong, C. E. Hancock — Algorithms for predicting recovery time from night setback (optimal start) — ASHRAE Transactions 95(2), 1989

Obani abenza lokhu ukuze baziphilise

Imodeli yemfundo — hhayi yezinqumo zokusebenza. Izindawo zangempela zilinganisa yonke into ehlala ingashintshi kumishini nedatha yazo.