参考书目文章

合集下载
  1. 1、下载文档前请自行甄别文档内容的完整性,平台不提供额外的编辑、内容补充、找答案等附加服务。
  2. 2、"仅部分预览"的文档,不可在线预览部分如存在完整性等问题,可反馈申请退款(可完整预览的文档不适用该条件!)。
  3. 3、如文档侵犯您的权益,请联系客服反馈,我们会尽快为您处理(人工客服工作时间:9:00-18:30)。

参考教材一览表
※<所用教材>
本课程结合理论与实际情况,为了让学生了解与掌握木材干燥技术及发展趋势,在教材方面根据目前的四种版本,进行综合比较,特选用了最近出版的两本教材。

通过对学生的教材使用征询意见表明:对教材满足和满意率为100%,认为教材难易程度适中;教材理论性与实践性较好,对教材能否体现学科前沿方面绝大多数同学认为较好。

※<参考书目>
5※<参考文章>
其它参考资料:
1.马岩.重组木坯料在腰鼓形压辊辗压中应力的级数解初探.东北林业大学学报,1994,22(3):
65~69
2. 马岩等.均布载荷辗压重组木坯料的强度准则建立初探.东北林业大学学报,1993,21(6):
56~59
3.马岩等.重组木微观力学模型及刚度参数分析方法探讨.东北林业大学学
报,1995,23(4):106~109
4.Kollmann F F P著. 木材学与木材工艺学原理—实体木材. 江良游等译. 北京:中国林业出版社,1991:5-15
5.Xapyk B E著. 气体和液体对木材的渗透,(摘译)李维桔译.南京:南林科技, 1981(2):21-31
6.马岩等.静压作用下重组木坯料的力学机理和试验验证.林业科学,1996,32(2):171~174
7.马建隆. 宋之平等编.实用热工手册. 北京:水利电力出版社,1988:25-45
8.王国恒,张德元.干燥过程分析与数学模型方法.北京:96干燥学术研讨会,1996:125~130
9.王恺,肖亦华.重组木国内外概况及发展趋势.木材工业,1989,15(1):40~43
10.叶良明. 重组竹板材的研究. 浙江林学院学报,1991,8(2):133~140
11.申宗圻等.木材学[第二版].北京:中国林业出版社,1993:109-159
12.伊松林.木材浮压干燥过程的传热传质.博士论文.北京:北京林业大学,2002:1-18
13.刘志坤,杜春贵,李延军,等.小径杉木梳解加工工艺研究.林产工业,2003,30(3):10~13
14.吕建雄, 鲍甫成,姜笑梅.蒸汽处理对木材渗透性的影响.林业科学,1994,30(4):352~357
15.成俊卿主编.木材学.北京:中国林业出版社,1985:1-50
16.朱政贤.木材干燥(第二版).北京:中国林业出版社,1992:30-60
17.约翰·F·肖[美]著.木材传热传质过程.肖亦华等译.北京:中国林业出版,1989:8,28-58
18.许香雯主编. 纤维板生产工艺与技术. 哈尔滨:东北林业大学出版社, 1988:190~195
19.严家碌等,湿空气和烃燃气热力性质图表. 北京:高等教育出版社,1989:45-68
20.张远君,王平,韩振兴等. 流体力学大全. 北京:北京航天航空大学出版社,1991:1-30
21.张贵麟,华毓坤等.澳大利亚重组木的考察. 林产工业,1991,18(6):38~39
22.张璧光.我国木材干燥技术现状与国内外发展趋势.北京林业大学学
报,2002,24(5):262~266
23.李大纲.杨木高温干燥过程中水分迁移及流变特性的研究. 博士论文.南京:南京林业大
学,1998:1-26
24.李友荣等,多孔物料降速干燥阶段水分蒸发机理.中国工程热物理学会传热传质学术论
文集,1994,( 5):50~54
25.杜国兴.木材水分非稳态扩散的研究.南京林业大学学报,1991,15(2):76~82
26.杨庆贤.木材干燥过程中热分子压力对热传导的影响.《新学科研究》.北京:北京中国科
学技术出版社,1993:130~131
27.杨庆贤.木材横纹导热系数的半经验理论公式.《力学与实践》,1993,15(2): 50~55
28.杨庆贤. 木材干燥过程中热质迁移交互作用的研究.浙江大学学报,1998,32(4):304-308
29.杨强生. 对流传热与传质. 北京:高等教育出版社, 1985:24-53
30.汪孙国,华毓坤.重组竹制造工艺的研究.木材工业,1991,5(2):14~18
31.陆仁书. 刨花板制造学. 北京:中国林业出版社(第2版),1993:1-30
32.陆仁书. 胶合板制造学. 北京:中国林业出版社(第2版),1993:1-40
33.周筠清, 传热学. 北京:冶金工业出版社, 1999:4-34
34.尚德库.木材干燥导水系数和换水系数的研究.林业科学,1992,18(5):476~478
35.苗平. 马尾松木材高温干燥的水分迁移和热量传递. 博士论文.南京:南京林业大
学,2000:4
36.侯祝强.木材导热系数的的研究.林业科学,1992,28(2):153~160
37.赵广杰. 木材的介电驰豫和分子运动. 东北林业大学学报,1993,21(6):44~48.
38.赵广杰. 木材细胞壁中吸着水的介电驰豫. 北京:中国林业出版社, 2002:1-20
39.赵有科, 鲍甫成.针叶树木材流体纵向渗透性与其构造关系的理论分析.林业科
学,1998,34(4):88~95
40.徐咏兰等. 中密度纤维板制造. 北京:中国林业出版社,1995:5-10
41.钱滨江等编,简明传热手册. 北京:高等教育出版社,1984:23-47
42.高瑞堂.木材热学性质与温度关系的研究.东北林业大学学报, 1985, 13(4):2
43.常建民.木材对流干燥过程热质传递规律及其湿迁移特性.哈尔滨:博士论文,1994:3-17
44.彭晓峰,王补宣. 微型槽结构的冷却特性. 大连:中国工程热物理学会传热传质学术会
议论文集,1994:3-26
45.彭晓峰,王补宣.液体内部汽化空间与拟沸腾.北京:中国科学基金,1994,8(1):7~12
46.谢拥群,陈瑞英,杨庆贤等. 木材干燥过程中的热质迁移及其耦合关系. 林业科学,2004,
40(1): 148~153
47.鲍甫成, 侯祝强. 针叶树材管胞气体渗透流阻及其渗透系数.林业科学, 2001,37(4):80~87.
48.鲍甫成, 胡荣. 泡桐木材流体渗透性与扩散性的研究. 林业科学,1990,26(3): 239-245
49.鲍甫成, 赵有科, 吕建雄. 杉木与马尾松木材渗透性与超细结构的关系研究.北京林业大
学学报,2003,25(1):1~5
50.鲍甫成, 郝丙叶, 杜浩等. 中国主要针叶树人工林与天然林及幼龄材与成熟材流体扩散
性比较研究.北京:世界林业研究(专集), 1994:154~161.
51.鲍甫成. 中国重要树种流体渗透性研究. 林业科学,1992,28(3):237~245
52.鲍甫成,江泽慧. 中国主要人工林树种木材性质. 北京:中国林业出版社,1998:4-34
53.熊文愈. 杉木. 北京:中国林业出版社,1997:1-25
54.潘石峰. 沙柳材的特性及重组木的研究. 木材工业,1991,17(5):9~11
55.Avramidis S., Kuroda N. Siau J. F. Experiment in Nonisothermal Diffusion of Moisture in
Wood. PartⅡ.Wood and Fiber Science,1987,19(4):407~413
56.Bekele T. Kiln drying of sawn boards of young Eucalyptus globules Labill. And Eucalyptus
camaldulensis Dehnh. Grown on the Ethiopian Highlands. Holz als Roh-und wrestle,
1994,52(6):377~382
57.Ben Nasrallah S. and perre P. Detailed study of a model of heat and mass tronsfer during
convective drying of porous media Boone R S. High-temperature kiln-drying red maple lumber —some options. F P J, 1986, 36(9):19~25
58.Bram hall G.. Diffusion and the drying of wood. Wood Sciencer Technology,
1995,29(3):209~215
59.Bram hall G.. Mathematical model for lumber drying 1-principles involved. Wood science,
1979,12(1):15~21
60.Bram hall G..Sorption diffusion in wood. Wood science Technology, 1994,28(1):86~88
61.Can adido. Properties of boards made from “Zephyr” particles I. Effects of “zephyr” particle
length and ordinary chip admixture on the bending properties of boards. Mokuzai Gakkaishi, 1991,37(5):441~448
62.Chafe S C, Bananas R A. Effect of presetting on moisture loss and internal checking in high
temperature drying board of Eucalyptus globules and Euealyplus regnants. Joural of the institute of wood science, 1996,14(2):72~77
63.Chen G. The drying stress and check development on high temperature kiln seasoning of
sapwood pinus radiate boards, part l moisture movement and train model. Holz als Roh-und werkstoff, 1997,55(2):59-64
64.Chen G.. The drying stress and check development on high temperature kiln seasoning of
sapwood pinus radiate boards, part 2 stress development. Holz als Roh-und werkstoff,
1997,55(2):67-73
65.Chen Y, Choong E T, Wetzel D M. A numerical analysis technique to evaluate the moisture
dependent diffusion coefficient on moisture movement during drying. Wood and Fiber Science, 1996, 28(3):338-345
66.Chen Y, Choong E T, Wetzel D M. Evaluation of diffusion coefficient and surface emission
coefficient by an optimization technique. Wood-and-Fiber-Science, 1995,27(2):178-182
67.Choog E T, A chmadi S, Tesoro F O. Variables affecting the longitudinal flow of gas in
hardwood. In: Cellulose and Wood-Chemistry and Technology Proceeding of the Tenth
Cellulose Conference. ED. C. Schuerch. Syracuse, New York, 1988,1175-1196
68.Choong E T Skaar C. Separating internal and external resistance to moisture removal in wood
drying. Wood Science, 1969,1(4):200-202
69.Choong E T, Skaar C. Diffusion and surface emissive in wood drying. Wood and Fiber
Science, 1972,4(2):88-86
70.Choong E.T.. Movement of moisture through a softwood in the hygroscopic range. Forest
Products Journal,1963,13(11):489~498
71.Cloutier A. and Fortin Y. A model of moisture movement in wood based on water potential
and the determination of the effective water conductivity.1993 Wood Sci Technol. 27:95-114 72.Cloutier A. Fortin Y. et al. A wood drying finite element model based on the water potential
concept. Drying Technology, 1992, 10(5),1151-1181
73.Collignan A. Nadeau J. P. et al. Description and analysis of timber drying kinetics. Drying
technology, 1993, 11(3),489-506
74.Datta.A.K. and Ni.H.. infrared and hot-air-assisted microwave heating of foods for control of
surface moisture. Journal of food engineering. 2002,51:355-364.
75.Dongshan zhang and A.S. Mujumdar. Deformation and slress Analysis of Porous Capillarg
Bodles During Intermittent volumetric Thermal Drying.1992.Drying Technology.
10(2),421-443
76.George Bronnhall Mathematical model for lumber drying. 1979. wood science.Vol.12.No1
Ho—Yang Kang,C.Arthur Hart.Temperature Effect on Diffusion Coefficient in Drying
Wood.Wood and Fiber Science.1997,29(4):325-332
77.Hunter A J. The evaporation of water from wood at high temperature. Wood Science and
Technology, 1997,31(6):73-76
78.Iradayaraj J. and Haghighi K. Nonlinear Finite Element Analysis Coupled Heat and Mass
Transfer Problems with an Application to Timber Drying.Drying Technology,
1990,8(4):731-749
79.J.D.Coleman, Surrey Hills.Reconsolidated wood product. US Patent 4 232 067.1980
80.J.D.Coleman. A“Reconsolidated” Wood for Structural Purposes. Division of Chem. tech.
Research review,CSIRO Australia, 1981
81.Jain, J.C.A note on eucalyptus “hybrid” as timber. Indian forester. 1969, 95(1):29-32
82.Kho P C S, Kee R B, Walker J C F. Effect of minor board irregularities and air flows on the
drying rate of softwood timber board in kilns. Proc. IUFRO International Wood Drying
Symposium. Sesttle, Washington, 1989,150-157
83.Koponen H. Moisture diffusion coefficient of wood, 5th Inter. Gymp. the drying held at the
MIT, Cambridge. MA. 1986.P225-232
ngrish T A G, Keey R B, Kho P C S, Walker J C F. Time-dependent flow in arrays of
timber boards: Flow visualization. Mass-transfer measurement and numerical simulation. Chem.
Eng. Science, 1993,84(12):2211-2223
ngrish T A G, Kho P C S, Keey R B, Walker J C F. Experimental measurement and
numerical simulation of local mass-transfer coefficients in timber kilns. Drying Technology, 1992,10(3):753-782
86.Lee J H, Jung H S. Effect of drying temperature on intemal temperature drying rate and
drying defects for Japanese Larch in high temperature drying. Mokchae Kongkak,
1997,25(4):99-107
87.Liu J Y. Diffusion coefficient of porous solid obtained from isothermal sorption tests.
Research Paper Forest Products Laboratory, USDA Forest Service, 1994,No. FPL-RP-533,10 PP.
88.Liu J, Avrmidis S Ellis S. Simulation of heat and moisture transfer in wood during drying
under constant ambient conditions. Holzforschung,1994,48(3):236-240
89.Liu J.Y. A new method for separating diffusion coefficient and surface emission coefficient.
Wood and Fiber Science,1989,21(2):133-141
90.Lu Jianxiong, Avramidis S. Non-Darcian air flow in wood, part 1. Specimen length effect.
Holforschung, 1997,51(6):577-583
91.LuiKov A.V. systems of Differential. Equations of Heat and Mass Transfer in Capillary
-Porous Bodies. Int. J. Heat Mass Transfer,1975, l(18): 1-14
92.Martley J F. Moisture movement through wood, The steady state. For Proc Res Tech, Paper 2,
Lendon, 1926
93.Meijer de M. Unsteady-state diffusion of methanol in Douglas-fir Heartwood at high
termperature. Holzforschung, 1996,50(2):135-143
ota M R, Tschernitz J L. Correlation of Loblolly pine drying rates at high-temperatures.
Wood and Fiber Science, 1990,22(3):298-313
95.Mounji H. and M.EL Kouali.Modeuing of the Drying process of wood in 3-Dimensions.
Drying Technology, 1991,9(5), 1259-1314
96.N. M. Ozisik. Basic Heat Transfer. New Y ork:McGraw-Hill Book Company, 1997:1-5
97.Nelson R M Jr. Heats of transfer and activation energy for bound water diffusion in wood.
Wood Science and Technology, 1991,25(3):193-202
98.Nelson R.M., Missoula J.Test of an equation for nonisothermal moisture transport in wood.
Wood Sci. Technology, 1991,25(5):321-325
99.Nelson R.M.J. Diffusion of bound water in wood. Wood Science and Technology,1986,
20(3):309-328
100.Ni H., Datta A.K., Torrance K.E.. Moisture transport in intensive microwave heating of biomaterials:a multiphase porous media model. International journal of heat and mass
transfer,1999,42:1501-1512.
101.Oudlaxi N. and Arnaud G.A Two-Dlnensional study of wood plank Drying The Effeat of Gaseous Prissure Below Boiling point. Transport in porous Media,1992,7:39-61
102.Pang S S, Keey R B, Langrish T A G, Walker J C F. Airflow reversals in high-termperature kiln drying of Pinus radiate boards. 1:Drying of a single board. New-Zealand-Journal-of
Forestry-Science,1994,24(1):83-103
103.Pang S S, Keey R B, Langrish T A G, Walker J C F. Airflow reversals in high-temperature kiln drying of Pinus radiate boards. 2:Drying of a stack boards. New-Zealand-Journal of
Forestry Science, 1994,24(1):104-119
104.Pang S S. Relationship between a diffusion model and a transport model for softwood drying.
Wood and Fiber Science, 1997,29(1):58-67
105.Pang, S. Mathematical modeling of MDF fiber drying: drying optimization. Drying Technology-An International, 2000,18(7):1564-1574
106.Pang,S. External heat and mass transfer coefficients for kiln drying of softwood timber.Drying Technology-An International Journal, 1996, 14(3): 859-871
107.Pang. S et al. Moisture content gradient in softwood during drying: Simulation from a 2-Dmodel and measurement. Wood Science &Technology, 1996,30(3):165-178
108.Pang. S. High-temperature drying of radiate pinus boards in a batch kiln. Ph.D. thesis, 1994,1(1):4
109.Peng, X. F.and Wang, B. X., Forced convection and flow bolling heat transfer for liquid flowing though microchannels, Int.J. Heat Mass Transfer, 1993,36(14):3421-3427
110.Peng, X.F. and Wang, B.X., Cooling characteristics with microchanneled S tructures,J.
Enhanced Heat Transfer, 1994,1(4):315-326
111.Peng, X.F. Peterson, G.P. and Wang, B.X., Heat tranfer characteristics of water Flowing through microchannels,Int.J.Experimental Heat Transfer,1995,7(4):265-283
112.Peralta P. N.,Skaar C.. Experiments on steady-state nonisothermal moisture movement in wood. Wood and Fiber Science,1993,25(2):124-135
113.Plumb O. A. Spdek G.A. Heat and Transfer in wood during Drying. Int. J. Heat Mass Transfer.
1985,20(9):1669-1678
114.Quarles S.L., Erickson R.W. Examples of nonisothermal moisture movement in wood. Wood and Fiber Science,1990,22(3):314-325
115.Sehlstedt-Persson S M B. High temperature drying of Scots pine. A comparison between HT and LT drying Holzals Roh-und werkstoff,1995,53(2):95-99
116.Shukla, K. S. Reconsituted wood from poplar (populus deltoides). J.Ind Acad.wood sci,1992,23(1):17-21
117.Shukla, K.S. and Anil Negi. Reconstitued wood from eucalyptus hybrid. Timb. Dev Assoc.(India), 1996,11(1):5-8
118.Siau J F, Bao Avramidis S. Experiments in nonithermal diffusion of moisture in wood. W S &T, 1986,18(1):84-89
119.Siau J F. Application of a thermodynamic model nonisothermal diffusion experiments. W S T, 1993,27(2):131-136
120.Siau J F. Chemical potential and nonisothermal diffusion, Letter to editor. W F S,1984,16(4):628-629
121.Siau J F. Experiment on nonisothermal moisture movement in wood. W S & T, 1983,15(1):40-46
122.Siau J F. Flow in wood. US:Syracuse Univ Press, 1971:5-35
123.Siau J F. Transport processes in wood. Springer-Verlag Berlin Heidelberg, New York, Tok0, 1984
124.Siau J. F. and Fin Z Nonisothermal moisture diffusion experiments analyzed by four alternative equations. wood sci. Technol,1985,19:151-157
125.Siau J. F. Nonisothermal diffusion model based on irreversible thermody namics. wood sci.
Technol,1992,26:325-328
126.Siau J.F.Transport processes in wood . New York: Springer-Verlag, 1984:161-163
127.Siau.J.F., M,Babiak. Experiments on nonisothermal moisture movement in wood. Wood and Fiber science,1983,15(1):40-46.
128.Simpson W.T., Lin J.Y. Dependence of The Water Vapor Diffusion Coeffient of Aspen (Populus spec.)on Moisture Content. Wood Science and Technology,1991,26(1):9-21
129.Simpson W.T.. Determination and Use of Moisture Diffusion Coefficient to Characterize Drying of Northern Red Oak(Quercus rubra).Wood Science and Technology,
1993,27(4):409-420
130.Skaar oh and Saiu J. F. Thermal diffusion of bound water in wood. Wood sci and Technol, 1981, 15(1):105-112
131.South Australian Timber Corporation. A process and apparatus for applying bonding agent and a process for forming reconsolidated wood product. Australian:WO88/04983 Patent,
1988:1-6
132.St.Avramidis,J.F.Siau.An Investigation of The External and Internal Resistance to Resistance to Moisture Diffsion in Wood. Wood Science and Technology, 1987,21:249-256
133.Stanish M. A, Scantier G S, Kayihan F. A mathematical model of drying for Hygroscopes porous media. AIChE J, 1986,32(8):1301-1311
134.Swigon J T C. The movement of moisture with references to timber seasoning. London:For Prod Technology, 1926:2
135.Swigon J Wood drying with superheated steam and air. Przem drzew, 1995,46(11):21-24 136.Taylor F.Drying pine lumber at high temperature and air velocities. Wood and Fiber Science,1987.19(3):239-245
137.Taylor F. Moisture gradients in poles dried at high temperature P P J,1995,41(5):36-38
138.Thomas. H. R..,Lewis R.W. An application of the finite element method to the drying of timber , Wood and Fiber,1980,2(4):237-241
139.Tiemann H D. Effect of moisture upon strength and stiffness of wood, USDA For Serv. Bull.
1906
140.Tien C.L.,Majumdar A.. Experimental and numerical study of microwave drying in unsaturated porous material. m.Heat Mass Transfer,2001,28(5):605-616
141.Vansteenkiste D, Stevens M, Acker J V, High temperature drying of ftesh sawn poplar word in experimental connective drying. Holz als Roh-und werkstoff,1997,55(5):307-314
142.William G.Gracs. Manufacture of reconsolidate wood products. US:Patent 4 704 316,1987:1-5
143.Yoji Kikata, Hiroshi Nagasaka and Toshiyki Machiyashiki. Zephr wood, a Network of Continuous Fibers I. Defibrillation of wood by roller crushing and decomposition of it. Wood Science Journal, 1989,35(10):2-7
144.Yoji kikata, Hiroshi Nagasaka and Toshiyki Machiyashiki. Zephr wood, a Network of Continuous Fibers II. Production of low-density zephr wood. Wood Science Journal,
1989,35(11):3-9
145.Yong Chen,Elvin T. Choong,David M Wetzel.Evaluation of Diffusion Coefficient and Surface Emission Coeffient by An Optimization Technique.Wood Science and Technology, 1995,27(2):178-182
146.Zhangjing C. Primary drying fo rces in wood vacuum drying. PHD dissertation.
Virginia:Virginia Tech,1997:1-23
147.Zhangjing Chen,Fred mb. Investigation of boiling front during vacuum drying of wood.
Wood and fiber science,2001,33(4):639-647.。

相关文档
最新文档