• 제목/요약/키워드: Solar Efficiency

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농업 기상특성과 작물생산의 효율 및 안전성 (Effects of Climatic Condition on Stability and Efficiency of Crop Production)

  • 로버트 쇼
    • 한국작물학회지
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    • 제27권4호
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    • pp.296-313
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    • 1982
  • At a time when world population and food supply are in a delicate balance, it is essential that we look at factors to improve this balance. We can alter the environment to better fit the plant's needs, or we can alter the plant to better fit the environment. Improved technology has allowed us to increase the yield level. For moderately detrimental weather events technology has generally decreased the yield variation, yet for major weather disasters the variation has increased. We have raised the upper level, but zero is still the bottom level. As we concentrate the production of particular crops into limited areas where the environment is closest to optimum, we may be increasing the risk of a major weather related disaster. We need to evaluate the degree of variability of different crops, and how weather and technology can interact to affect it. The natural limits of crop production are imposed by important ecological factors. Production is a function of the climate, the soil, and the crop and all activities related to them. In looking at the environment of a crop we must recognize these are individuals, populations and ecosystems. Under intensive agriculture we try to limit the competition to one desired species. The environment is made up of a complex of factors; radiation, moisture, temperature and wind, among others. Plant response to the environment is due to the interaction of all of these factors, yet in attempting to understand them we often examine each factor individually. Variation in crop yields is primarily a function of limiting environmental parameters. Various weather parameters will be discussed, with emphasis placed on how they impact on crop production. Although solar radiation is a driving force in crop production, it often shows little relationship to yield variation. Water may enter into crop production as both a limiting and excessive factor. The effects of moisture deficiency have received much more attention than moisture excess. In many areas of the world, a very significant portion of yield variation is due to variation in the moisture factor. Temperature imposes limits on where crops can be grown, and the type of crop that can be grown in an area. High temperature effects are often combined with deficient moisture effects. Cool temperatures determine the limits in which crops can be grown. Growing degree units, or heat accumulations, have often been used as a means of explaining many temperature effects. Methods for explaining chilling effects are more limited.

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중질소(重窒素)를 이용한 수도품종(水稻品種) 및 시용시기(施用時期)에 따른 토양 및 시비질소(施肥窒素)의 효율 -제1보(第一報). 농가포장(農家圃場)에서의 NPK 단순시험(單純試驗)- (Efficiency of Soil and Fertilizer Nitrogen in relation to Rice Variety and Application Time, Using $^{15}N$ Labelled Fertilizer -I. N.P.K. simple trials in farmers fields-)

  • 박훈;박영선;이춘수
    • Applied Biological Chemistry
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    • 제24권4호
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    • pp.230-237
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    • 1981
  • 시비질소(施肥窒素)의 효율(效率)을 조사(調査)하기 위(爲)하여 삼요소(三要素) 및 황피요소(養被尿素)(SCU), 농가포장(豊家圃場)에서 2년간(年間) 통일계(統-系)(일본형(日本型), 인도형(印度型), 교잡선발(交雜選拔))와 일반장려계(一般奬勵系)를 사용(使用) 시험(試驗)하였다. 통일계(統一系)의 수량(收量)은 일반장려계일(一般奬勵系)에 비(比)하여 32개지역(個地域) 130개포장(個圃場)에서 2회분시(回分施)와 SCU를 포함한 삼요소(三要素)시험에서 저온다조(低溫多照)해에는 16%, 고온다조(高溫多照)해에는 23%의 증수(增收)를 보였다. 적정질소수준(適定室素水準)은 통일계(統一系)가 장려계(奬勵系)보다 저온(低溫)해에는 3.8kg, 고온(高溫)해에는 5.5kg이 높았으며 동일계(同一系)에서의 년차변이(年次變累)는 동년도(同年度)의 계통간(系統間)변이(變異)보다 컸다. 2회분시(回分施)는 l-2%의 일정(一定)치 않은 수량변이(收量變異)를 보였다. SCU는 20%의 시비량(施肥量) 절감(節減)에도 평균(平均) $2{\sim}4%$의 증수(增收)를 보였으며 염류답(鹽類畓)($27{\sim}39%$), 신개답(新開畓)(20%)과 미숙답(未熟畓)(10%)에서 현저한 증수효과(增收效果)를 보였다.

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수도품종의 물질생산과 생장해석에 관한 연구 (Studies on the Dry Matter Production and Growth Analysis of Rice Plants)

  • 김호열;송승달
    • 한국작물학회지
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    • 제20권
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    • pp.74-86
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    • 1975
  • 수도의 물질생산과 생장특성을 분석 검토하기 위해 1972년부터 1973년까지 Indica 품종인 수원 213-001와 수원 21004, Japonica 품종인 팔굉, 아끼바레, 농백의 5품종을 공시하여 2년간 시험한 결과를 요약하면 다음과 같다. 1) 각 품종간의 현존량(Total Standing Crop)의 차이는 생육초기에는 뚜렷하지 않았으나 출수기를 전후해서 품종간의 차이가 명확했다. 즉 출수후의 최대치가 수원 213-001와 수원 21004는 현존량이 약 80g/주인데 비해 기타 품종들은 60g/주 전후였다. 2) 군락의 엽면적은 각 품종 공히 출수기에 가장 많았고 그 후 점차 저하했다. 최대 엽면적기때의 엽면적지수(LAI)는 품종에 따라 3.06~5.7이었으며 수원 213-001가 가장 컸다. 3) F/C Ratio(광합성기관과 비광헙성기관의 비)는 분약초기에 최대치로서 각 품종 공히 0.7전후였으나 점차 저하하여 생장완료기에는 0.1정도였다. 4) 생산구조도를 추구한 결과 순생산량 및 고사량을 수량적으로 산출할 수 있었다. 5) 생육기간 중 총순생산량은 수원 213-001, 수원 21004, 팔굉, 아끼바레, 농백에 대해서 각각 112, 720, 91.848, 74.736, 80.449, 65.515g/주 이었다. 6) RGR(상대생장율)은 각 품종 공히 생장초기에 높아 품종에 따라 0.5~1.0g/g/wk이었으며 생장후기에는 각 품종 공히 0.1g/g/wk 정도로 저하했다. 특히 수원213-001와 수원 21004는 출수기의 RGR이 기타 품종에 비해 현저히 높았다. 7) NAR(순동화율)은 RGR과 같이 수원 213-001와 수원 21004에 있어서는 기타 품종에 비해 생장초기에 다소 낮았으나 출수기에는 현저히 높았다. 8) CGR(개체군생장속도)은 Indica 품종인 수원 213-001와 수원 21004는 출수기에 최대치로서 450g/지면적 $m^2$, Japonica 품종들은 200g/지면적 $m^2$ 전후의 생장속도를 보였다. 9) LAR(엽면적비)은 생장초기에 최대치로서 각품종 공히 100$\textrm{cm}^2$/g 정도이었고 생장후기에는 25$\textrm{cm}^2$/g 정도였다. 10) RGR과 NAR, Pn 등의 기상요인과의 상관관계는 각 품종 공히 출수기의 평균일사량 350Cal/$\textrm{cm}^2$/day 전후, 평균온도 24$^{\circ}C$정도일 때 가장 높았다. 11) 태양 Energy 이용율은 Indica 품종인 수원 213-001(2.90%), 수원 21004(2.45%)가 Japonica 품종들 (약 2.0%)에 비해 현저히 높았다. 이상의 분석 결과와 수량 생산의 결과를 종합하여 India 품종은 경북지역의 다수확 품종으로 높이 평가됨과 동시에 금후 재배적 제방법의 향상으로 보다 높은 수량을 얻을 수 있음을 알았다.

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불소계면활성제를 함유한 초친수 코팅액의 제조 및 방담 방오 특성 (Preparation of superhydrophilic coating solutions containing fluorosurfactants and characterization of their antifogging and antifouling properties)

  • 이수;임선문;황헌
    • 한국응용과학기술학회지
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    • 제34권3호
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    • pp.525-535
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    • 2017
  • 내열성이 우수하며, 태양광 모듈의 유리 표면에 방담성(antifogging) 및 방오성(antifouling)을 동시에 부여하여 효율을 향상시키기 위한 친수성 코팅액을 제조하기 위해 초친수성과 우수한 방담효과를 나타내는 Tween 20과 데카플루오로부탄과 폴리에틸렌글리콜 성분으로 구성된 불소계면활성제 수용액에 방오성 부여를 위하여 나노실리카를 분산하였다. 고온 처리에서 나노실리카의 함량에 따른 방담 효과는 모든 코팅액이 우수하였으나, 방오 효과는 나노실리카의 함량이 6 wt%일 때부터 나타났다. 불소계면활성제의 함량이 증가할수록 초기 접촉각이 증가하며 방담 효과도 500회 wiping까지 잘 유지되었다. 방오 효과 역시 불소계면활성제의 함량에 상관없이 우수하여 불소계면활성제의 적절한 첨가량은 0.1 wt%이상 이면 충분하였다. AFM 결과로부터 불소계면활성제가 0.1 wt%에서 0.3 wt%가 첨가된 경우 코팅 표면의 프랙탈구조가 확실히 나타나 방오성 향상에 기여하였다. 코팅된 유리의 투과도는 불소계면활성제가 0.1 wt% 첨가된 TL-1의 경우가 가장 높았으며 더 많은 양의 불소계면활성제를 첨가할 경우 오히려 투과도 향상은 미미하였다. 이러한 결과는 앞의 AFM 결과에서 나타난 표면 조도가 높으며 프랙탈구조 형성도 잘 일어난 TL-1 코팅액의 결과와 잘 일치하는 것이다.

Pulling rate, rotation speed 및 melt charge level 최적화에 의한 쵸크랄스키 공정 실리콘 단결정의 O2 불순물 최소화 설계 (A Czochralski Process Design for Si-single Crystal O2 Impurity Minimization with Pulling Rate, Rotation Speed and Melt Charge Level Optimization)

  • 전혜준;박주홍;블라디미르 아르테미예프;황선희;송수진;김나영;정재학
    • Korean Chemical Engineering Research
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    • 제58권3호
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    • pp.369-380
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    • 2020
  • 대부분의 단결정 실리콘 잉곳은 초크랄스키(Czochralski(Cz)) 공정으로 제조된다. 그러나 단결정 실리콘 잉곳을 제품화 및 태양 전지 기판으로 가공하였을 때 산소 불순물이 있는 경우 낮은 효율성을 나타내는 경향이 있다. 단결정 Si-잉곳의 생산을 위해서는 용융 Si를 녹인 다음 단결정 Si의 시드(Seed)로 결정화하는 초크랄스키(Cz) 공정을 도입한다. 용융된 다결정 Si-덩어리를 단결정 Si-잉곳으로 결정성장 될 때, 열 전달은 Cz-공정의 구조에서 중요한 역할을 한다. 본 연구에서 고품질 단결정 실리콘 잉곳을 얻기 위해 Cz-공정의 최적화된 설계를 구성하였다. 결정 성장 시뮬레이션로부터 결정성장을 위한 Pulling rate 및 Rotation speed에 최적의 변수값을 형성하기 위해 사용되었으며, 변형된 Cz-공정에 대한 연구 및 해당 결과가 논의되며 결정 성장 시뮬레이션을 사용하여 Cz-공정의 Pulling rate, Rotation speed 및 Melt charge level의 최적화된 설계로 인한 결정성장시 단결정 실리콘으로 유입되는 산소 농도 최소화를 설계하였다.

동절기 이중외피 시스템에 적용 가능한 PCM재료의 온도설정에 따른 실내 열 성능 분석에 관한 연구 (Study on Indoor Thermal Performance Analysis upon PCM Temperature applicable to the Double Skin Facade System in the Winter)

  • 류리;서장후;김용성
    • KIEAE Journal
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    • 제15권3호
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    • pp.43-48
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    • 2015
  • Purpose: Recently, many countries around the world are actively looking for the ways to make full use of natural energy sources and also develop and apply an environmentally friendly system designed to save building energy consumption. Under these circumstances, this study intended to determine the applicability and energy saving effect by deriving the indoor thermal performance characteristics and the PCM temperature appropriate for a double skin façade to reduce indoor energy consumption through the application of different PCM temperatures to double skin façade and perform a performance evaluation depending on the application or non-application of PCM to a double skin façade. Method: For this study, the physical variables of the double skin façade with PCM were configured through a preliminary examination based on an experimental measurement, and experimental measurements were taken with a total of 7 types of mockup cases: Type-1 (Basic), the basic double skin façade, Type-2 (PCM $18^{\circ}C$) which was applied to the inner skin of the double skin façade depending on the phase-change temperature of PCM, Type-3 (PCM $20^{\circ}C$), Type-4 (PCM $22^{\circ}C$), Type-5 (PCM $24^{\circ}C$), Type-6 (PCM $26^{\circ}C$), and Type-7 (PCM $28^{\circ}C$) with reference to the data analysis of the basic double skin façade which preceded this study, to analyze the indoor thermal performance of the double skin façade depending on PCM temperature and the installation or non-installation of a double skin façade applying PCM based on the selected unit space. Result: Indoor thermal performance was analyzed depending on the PCM temperature applicable to double skin façade, and the analysis of heating energy reduction showed that Type-2 (PCM $18^{\circ}C$) gained 15.9% more heat compared with Type-1 (Basic) and secondly, Type-3 (PCM $20^{\circ}C$) gained 11.5% more heat. Based on these findings, it is deemed possible that the use of energy for heating can be reduced when heat coming indoors increases during the heating period, and the appropriate temperature for PCM applied to the inner skin of a double skin façade to reduce heating energy in winter, Type-2 (PCM $18^{\circ}C$) showed the highest efficiency and Type-3 (PCM $20^{\circ}C$) was also deemed appropriate.

저온 공정 온도에서 $Al_2O_3$ 게이트 절연물질을 사용한 InGaZnO thin film transistors

  • 우창호;안철현;김영이;조형균
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2010년도 하계학술대회 논문집
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    • pp.11-11
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    • 2010
  • Thin-film-transistors (TFTs) that can be deposited at low temperature have recently attracted lots of applications such as sensors, solar cell and displays, because of the great flexible electronics and transparent. Transparent and flexible transistors are being required that high mobility and large-area uniformity at low temperature [1]. But, unfortunately most of TFT structures are used to be $SiO_2$ as gate dielectric layer. The $SiO_2$ has disadvantaged that it is required to high driving voltage to achieve the same operating efficiency compared with other high-k materials and its thickness is thicker than high-k materials [2]. To solve this problem, we find lots of high-k materials as $HfO_2$, $ZrO_2$, $SiN_x$, $TiO_2$, $Al_2O_3$. Among the High-k materials, $Al_2O_3$ is one of the outstanding materials due to its properties are high dielectric constant ( ~9 ), relatively low leakage current, wide bandgap ( 8.7 eV ) and good device stability. For the realization of flexible displays, all processes should be performed at very low temperatures, but low temperature $Al_2O_3$ grown by sputtering showed deteriorated electrical performance. Further decrease in growth temperature induces a high density of charge traps in the gate oxide/channel. This study investigated the effect of growth temperatures of ALD grown $Al_2O_3$ layers on the TFT device performance. The ALD deposition showed high conformal and defect-free dielectric layers at low temperature compared with other deposition equipments [2]. After ITO was wet-chemically etched with HCl : $HNO_3$ = 3:1, $Al_2O_3$ layer was deposited by ALD at various growth temperatures or lift-off process. Amorphous InGaZnO channel layers were deposited by rf magnetron sputtering at a working pressure of 3 mTorr and $O_2$/Ar (1/29 sccm). The electrodes were formed with electron-beam evaporated Ti (30 nm) and Au (70 nm) bilayer. The TFT devices were heat-treated in a furnace at $300^{\circ}C$ and nitrogen atmosphere for 1 hour by rapid thermal treatment. The electrical properties of the oxide TFTs were measured using semiconductor parameter analyzer (4145B), and LCR meter.

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A Feasibility Study for a Stratospheric Long-endurance Hybrid Unmanned Aerial Vehicle using a Regenerative Fuel Cell System

  • Cho, Seong-Hyun;Cha, Moon-Yong;Kim, Minjin;Sohn, Young-Jun;Yang, Tae-Hyun;Lee, Won-Yong
    • Journal of Electrochemical Science and Technology
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    • 제7권1호
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    • pp.41-51
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    • 2016
  • In the stratosphere, the air is stable and a photovoltaic (PV) system can produce more solar energy compared to in the atmosphere. If unmanned aerial vehicles (UAVs) fly in the stratosphere, the flight stability and efficiency of the mission are improved. On the other hand, the weakened lift force of the UAV due to the rarefied atmosphere can require more power for lift according to the weight and/or wing area of the UAV. To solve this problem, it is necessary to minimize the weight of the aircraft and improve the performance of the power system. A regenerative fuel cell (RFC) consisting of a fuel cell (FC) and water electrolysis (WE) combined PV power system has been investigated as a good alterative because of its higher specific energy. The WE system produces hydrogen and oxygen, providing extra energy beyond the energy generated by the PV system in the daytime, and then saves the gases in tanks. The FC system supplies the required power to the UAV at night, so the additional fuel supply to the UAV is not needed anymore. The specific energy of RFC systems is higher than that of Li-ion battery systems, so they have less weight than batteries that supply the same energy to the UAV. In this paper, for a stratospheric long-endurance hybrid UAV based on an RFC system, three major design factors (UAV weight, wing area and performance of WE) affecting the ability of long-term flight were determined and a simulation-based feasibility study was performed. The effects of the three design factors were analyzed as the flight time increased, and acceptable values of the factors for long endurance were found. As a result, the long-endurance of the target UAV was possible when the values were under 350 kg, above 150 m2 and under 80 kWh/kg H2.

Blocking layer 적용을 통한 HgI2 방사선 변환센서의 신호대 잡음비 향상에 관한 연구 (Study on Improvement of Signal to Noise Ratio for HgI2 Radiation Conversion Sensor Using Blocking Layer)

  • 박지군;윤인찬;최수림;윤주선;이영규;강상식
    • 한국방사선학회논문지
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    • 제5권2호
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    • pp.97-101
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    • 2011
  • 본 연구에서는 적충 구조를 이용하여 누설전류를 저감 시키는 기술을 적용하여 입자침전법을 이용한 방사선 영상 센서의 변환 물질을 개발하였다. 이는 디지털 방사선 영상 검출기의 두 가지 방식 중 하나인 직접방식에 사용되는 핵심 소자로 기존의 비정질셀레늄(a-Se)을 대체하여 더욱 효율이 높은 후보 물질들이 연구되어지는 가운데 태양전지와 반도체 분야에서 이미 많이 사용되어온 이종접합을 이용해 누설 전류를 저감 시키는데 그 목적이 있다. 본 연구에서 사용되는 입자 침전법 제조방법은 검출 물질 제작이 용이하고 높은 수율과 대면적의 검출기 제작에 적합하나 높은 누설 전류가 의료 영상에 있어서 문제가 되어 오고 있다. 이러한 단점을 보완하기 위해 적충 구조를 이용하여 누설 전류를 저감시킨다면 PIB법을 이용하여 간편하게 향상된 효율의 디지털 방사선 검출기를 제작 할 수 있다고 사료 되어 진다. 본 연구에서는 누설 전류와 민감도에 대한 전기적 신호를 측정하여 제작된 적충 구조의 방사선 검출 물질의 특성 평가가 이루어 졌다.

도시 주차장내 수목그늘의 경제적 이익 연구 -미국 캘리포니아 데이비스 대학 주차장을 사례로- (A Study on the Economic Benefit of Urban Parking Lot Tree Shading -In the Case of University of California Davis Parking Lot-)

  • 장동수
    • 한국조경학회지
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    • 제33권6호
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    • pp.98-108
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    • 2006
  • The climate of urban area is an unstable type with considerable seasonal variation in precipitation wind speed, and temperature and it grows worse. Besides, ozone is a serious air pollutant in most of large cities. So worldwide, some of large cities are investing in forestry options to offset their climate problems, but lack of information has hindered comparisons of urban un cost effectiveness to other options. This research intends to study the economic benefits of tree shading of 19 parking lots in UCD campus. The economic benefits of tree shading are air conditioning savings, air quality, stormwater run-off, and other benefits. Especially, this study focuses how much the economic benefit of parking lot shading has been increased from 1995 to 2003 year by aerophoto. Some data on dimensions of parking lots and the number, size, tree species, and location of trees around each parking lot was inventoried. Two aerophotos(1995,2003) were used in order to analyze the increasement of tree canopy in 19 parking lots for 8 years. However, increasing coverage of trees and managing them for healthy growth would not be sufficient for avoiding adverse impacts by future climate change. Additional measures should be followed such as an increase of energy use efficiency and development of substitute energy. For example, coverage of trees help to save cooling energy by blocking solar radiation reaching parking cars and building structures through shading, and creating cool micro-climates through evapotranspiration. They also reduce heating demand by decreasing air infiltration and heat conduction out of the interior of buildings. Proper arrangement of vegetation over the parking lots can reduce cooling and heating costs. So proper planting design around hard space paving including species selection and location can significantly save cooling and heating energy. And a reduction in car and building's heating and cooling costs results in the reduction in energy demand which causes to emissions of air pollutants. Total increased tree canopy from 1995 to 2003 is $8,470.45m^2$ and the economic benefits is US$ 5,282.10. The economic benefit of one tree has been US$ 7.21 for 8 years. And an annually increased benefit is US$ 0.9 per a tree. If this kind of study is applied to studying the economic benefits of tree canopy in parking lots of Korea, it could result in guidelines of tree planting of parking lots. Because the trees selected for planting in parking lots were not suitable for an environment, the guidelines should contain a recommended list of trees. The guidelines should propose the shading percentage of parking lot when we plan a parking lot and contain the maintenance of trees in order to maximize the economic benefits of tree canopy.